References
* | 1 | Adams, A., Arkani-Hamed, N., Dubovsky, S., Nicolis, A. and Rattazzi, R., “Causality,
analyticity and an IR obstruction to UV completion”, J. High Energy Phys., 2006(10), 014
(2006). [![]() ![]() |
* | 2 | Ade, P. A. R. et al. (Planck Collaboration), “Planck 2013 results. XVI. Cosmological
parameters”, arXiv, e-print, (2013). [![]() ![]() |
* | 3 | Aghababaie, Y., Burgess, C. P., Cline, J. M., Firouzjahi, H., Parameswaran, S. L., Quevedo,
F., Tasinato, G. and Zavala C, I., “Warped brane worlds in six dimensional supergravity”, J.
High Energy Phys., 2003(09), 037 (2003). [![]() ![]() ![]() |
* | 4 | Aghababaie, Y., Burgess, C. P., Parameswaran, S. L. and Quevedo, F., “Towards a naturally
small cosmological constant from branes in 6D supergravity”, Nucl. Phys. B, 680, 389–414
(2004). [![]() ![]() |
* | 5 | Ahmedov, H. and Aliev, A. N., “The General Type N Solution of New Massive Gravity”, Phys.
Lett. B, 694, 143–148 (2010). [![]() ![]() |
* | 6 | Ahmedov, H. and Aliev, A. N., “Type D Solutions of 3D New Massive Gravity”, Phys. Rev.
D, 83, 084032 (2011). [![]() ![]() |
* | 7 | Akrami, Y., Koivisto, T. S., Mota, D. F. and Sandstad, M., “Bimetric gravity doubly coupled
to matter: theory and cosmological implications”, J. Cosmol. Astropart. Phys., 2013(10), 046
(2013). [![]() ![]() ![]() |
* | 8 | Akrami, Y., Koivisto, T. S. and Sandstad, M., “Accelerated expansion from ghost-free
bigravity: a statistical analysis with improved generality”, J. High Energy Phys., 2013(03),
099 (2013). [![]() ![]() |
* | 9 | Akrami, Y., Koivisto, T. S. and Sandstad, M., “Cosmological constraints on ghost-free
bigravity: background dynamics and late-time acceleration”, arXiv, e-print, (2013). [![]() ![]() |
* | 10 | Alberte, L., “Massive Gravity on Curved Background”, Int. J. Mod. Phys. D, 21, 1250058
(2012). [![]() ![]() |
* | 11 | Alberte, L. and Bezrukov, F., “Semiclassical Calculation of Multiparticle Scattering Cross
Sections in Classicalizing Theories”, Phys. Rev. D, 86, 105008 (2012). [![]() ![]() |
* | 12 | Alberte, L., Chamseddine, A. H. and Mukhanov, V., “Massive Gravity: Resolving the Puzzles”,
J. High Energy Phys., 2010(12), 023 (2010). [![]() ![]() |
* | 13 | Alberte, L., Chamseddine, A. H. and Mukhanov, V., “Massive Gravity: Exorcising the Ghost”,
J. High Energy Phys., 2011(04), 004 (2011). [![]() ![]() |
* | 14 | Alberte, L. and Khmelnitsky, A., “Reduced Massive Gravity with Two Stückelberg Fields”,
Phys. Rev. D, 88, 064053 (2013). [![]() ![]() |
* | 15 | Alexandrov, S., “Canonical structure of Tetrad Bimetric Gravity”, arXiv, e-print, (2013). [![]() ![]() |
* | 16 | Alishahiha, M. and Fareghbal, R., “D-Dimensional Log Gravity”, Phys. Rev. D, 83, 084052
(2011). [![]() ![]() |
* | 17 | Amendola, L., Kunz, M. and Sapone, D., “Measuring the dark side (with weak lensing)”, J.
Cosmol. Astropart. Phys., 2008(04), 013 (2008). [![]() ![]() |
* | 18 | Andrews, M., Chu, Y.-Z. and Trodden, M., “Galileon forces in the Solar System”, Phys. Rev.
D, 88, 084028 (2013). [![]() ![]() |
* | 19 | Andrews, M., Goon, G., Hinterbichler, K., Stokes, J. and Trodden, M., “Massive Gravity
Coupled to Galileons is Ghost-Free”, Phys. Rev. Lett., 111, 061107 (2013). [![]() ![]() ![]() |
* | 20 | Andrews, M., Hinterbichler, K., Stokes, J. and Trodden, M., “Cosmological perturbations of
massive gravity coupled to DBI Galileons”, Class. Quantum Grav., 30, 184006 (2013). [![]() ![]() |
* | 21 | Andringa, R., Bergshoeff, E. A., de Roo, M., Hohm, O., Sezgin, E. and Townsend,
P. K., “Massive 3D supergravity”, Class. Quantum Grav., 27, 025010 (2010). [![]() ![]() ![]() |
* | 22 | Antoniadis, I., Minasian, R. and Vanhove, P., “Non-compact Calabi–Yau manifolds and
localized gravity”, Nucl. Phys. B, 648, 69–93 (2003). [![]() ![]() |
* | 23 | Apostolopoulos, P. S. and Tetradis, N., “Late acceleration and w = −1 crossing in induced
gravity”, Phys. Rev. D, 74, 064021 (2006). [![]() ![]() ![]() |
* | 24 | Arkani-Hamed, N., Cohen, A. G. and Georgi, H., “(De)Constructing Dimensions”, Phys. Rev.
Lett., 86, 4757–4761 (2001). [![]() ![]() |
* | 25 | Arkani-Hamed, N., Cohen, A. G. and Georgi, H., “Electroweak symmetry breaking from
dimensional deconstruction”, Phys. Lett. B, 513, 232–240 (2001). [![]() ![]() |
* | 26 | Arkani-Hamed, N., Dimopoulos, S., Dvali, G. and Gabadadze, G., “Non-Local Modification
of Gravity and the Cosmological Constant Problem”, arXiv, e-print, (2002). [![]() ![]() |
* | 27 | Arkani-Hamed, N., Georgi, H. and Schwartz, M. D., “Effective field theory for massive
gravitons and gravity in theory space”, Ann. Phys. (N.Y.), 305, 96–118 (2003). [![]() ![]() ![]() |
* | 28 | Arkani-Hamed, N. and Schwartz, M. D., “Discrete gravitational dimensions”, Phys. Rev. D,
69, 104001 (2004). [![]() ![]() |
* | 29 | Arnowitt, R., Deser, S. and Misner, C. W., “The dynamics of general relativity”, in Witten,
L., ed., Gravitation: An Introduction to Current Research, pp. 227–265, (Wiley, New York;
London, 1962). [![]() ![]() ![]() |
* | 30 | Arraut, I., “On the Black Holes in alternative theories of gravity: The case of non-linear massive
gravity”, arXiv, e-print, (2013). [![]() ![]() |
* | 31 | Aydemir, U., Anber, M. M. and Donoghue, J. F., “Self-healing of unitarity in effective field
theories and the onset of new physics”, Phys. Rev. D, 86, 014025 (2012). [![]() ![]() |
* | 32 | Ayon-Beato, E., Garbarz, A., Giribet, G. and Hassaine, M., “Lifshitz Black Hole in Three
Dimensions”, Phys. Rev. D, 80, 104029 (2009). [![]() ![]() |
* | 33 | Ayon-Beato, E., Giribet, G. and Hassaine, M., “Bending AdS Waves with New Massive
Gravity”, J. High Energy Phys., 2009(05), 029 (2009). [![]() ![]() |
* | 34 | Babichev, E. and Crisostomi, M., “Restoring general relativity in massive bigravity theory”,
Phys. Rev. D, 88, 084002 (2013). [![]() ![]() |
* | 35 | Babichev, E. and Deffayet, C., “An introduction to the Vainshtein mechanism”, Class. Quantum
Grav., 30, 184001 (2013). [![]() ![]() ![]() |
* | 36 | Babichev, E., Deffayet, C. and Esposito-Farèse, G., “Constraints on Shift-Symmetric
Scalar-Tensor Theories with a Vainshtein Mechanism from Bounds on the Time Variation of
G”, Phys. Rev. Lett., 107, 251102 (2011). [![]() ![]() |
* | 37 | Babichev, E., Deffayet, C. and Ziour, R., “Recovering General Relativity from massive gravity”,
Phys. Rev. Lett., 103, 201102 (2009). [![]() ![]() |
* | 38 | Babichev, E., Deffayet, C. and Ziour, R., “The Vainshtein mechanism in the Decoupling Limit of
massive gravity”, J. High Energy Phys., 2009(05), 098 (2009). [![]() ![]() |
* | 39 | Babichev, E., Deffayet, C. and Ziour, R., “Recovery of general relativity in massive gravity via
the Vainshtein mechanism”, Phys. Rev. D, 82, 104008 (2010). [![]() ![]() ![]() |
* | 40 | Babichev, E. and Esposito-Farèse, G., “Time-dependent spherically symmetric covariant
Galileons”, Phys. Rev. D, 87, 044032 (2013). [![]() ![]() |
* | 41 | Babichev, E. and Fabbri, A., “Instability of black holes in massive gravity”, Class. Quantum
Grav., 30, 152001 (2013). [![]() ![]() |
* | 42 | Babichev, E. and Fabbri, A., “Stability analysis of black holes in massive gravity: A unified
treatment”, Phys. Rev. D, 89, 081502 (2014). [![]() ![]() ![]() |
* | 43 | Babichev, E., Mukhanov, V. and Vikman, A., “k-Essence, superluminal propagation, causality
and emergent geometry”, J. High Energy Phys., 2008(02), 101 (2008). [![]() ![]() ![]() |
* | 44 | Baccetti, V., Martín-Moruno, P. and Visser, M., “Massive gravity from bimetric gravity”,
Class. Quantum Grav., 30, 015004 (2013). [![]() ![]() |
* | 45 | Bamba, K., Hossain, M. W., Myrzakulov, R., Nojiri, S. and Sami, M., “Cosmological
investigations of (extended) nonlinear massive gravity schemes with nonminimal coupling”,
Phys. Rev. D, 89, 083518 (2014). [![]() ![]() ![]() |
* | 46 | Bamba, K., Makarenko, A. N., Myagky, A. N., Nojiri, S. and Odintsov, S. D., “Bounce
cosmology from F(R) gravity and F(R) bigravity”, J. Cosmol. Astropart. Phys., 2014(01),
008 (2014). [![]() ![]() ![]() |
* | 47 | Bamba, K., Nojiri, S. and Odintsov, S. D., “Trace-anomaly driven inflation in f(T) gravity
and in minimal massive bigravity”, Phys. Lett. B, 731, 257–264 (2014). [![]() ![]() ![]() |
* | 48 | Bañados, M., Deffayet, C. and Pino, M., “The Boulware–Deser mode in 3D first-order massive
gravity”, Phys. Rev. D, 88, 124016 (2013). [![]() ![]() ![]() |
* | 49 | Barvinsky, A. O., “Dark energy and dark matter from nonlocal ghost-free gravity theory”,
Phys. Lett. B, 710, 12–16 (2012). [![]() ![]() |
* | 50 | Barvinsky, A. O., “Serendipitous discoveries in nonlocal gravity theory”, Phys. Rev. D, 85,
104018 (2012). [![]() ![]() |
* | 51 | Barvinsky, A. O. and Gusev, Y. V., “New representation of the nonlocal ghost-free gravity
theory”, Phys. Part. Nuclei Lett., 44, 213–219 (2013). [![]() ![]() |
* | 52 | Bekaert, X., Cnockaert, S., Iazeolla, C. and Vasiliev, M. A., “Nonlinear higher spin theories in
various dimensions”, arXiv, e-print, (2005). [![]() ![]() |
* | 53 | Belikov, A. V. and Hu, W., “Equivalence principle violation in weakly Vainshtein-screened
systems”, Phys. Rev. D, 87, 084042 (2013). [![]() ![]() |
* | 54 | Bell, J. F., Camilo, F. and Damour, T., “A tighter test of the local Lorentz invariance of gravity
using PSR J2317+1439”, Astrophys. J., 464, 857–858 (1996). [![]() ![]() |
* | 55 | Bellucci, S., Ivanov, E. and Krivonos, S., “AdS/CFT equivalence transformation”, Phys. Rev.
D, 66, 086001 (2002). [![]() ![]() |
* | 56 | Berezhiani, L., Chkareuli, G., de Rham, C., Gabadadze, G. and Tolley, A. J., “On Black Holes
in Massive Gravity”, Phys. Rev. D, 85, 044024 (2012). [![]() ![]() |
* | 57 | Berezhiani, L., Chkareuli, G., de Rham, C., Gabadadze, G. and Tolley, A. J., “Mixed Galileons
and Spherically Symmetric Solutions”, Class. Quantum Grav., 30, 184003 (2013). [![]() ![]() |
* | 58 | Berezhiani, L., Chkareuli, G. and Gabadadze, G., “Restricted Galileons”, Phys. Rev. D, 88,
124020 (2013). [![]() ![]() ![]() |
* | 59 | Berezhiani, L. and Mirbabayi, M., “Generalized Framework for Auxiliary Extra Dimensions”,
Phys. Lett. B, 701, 654–659 (2011). [![]() ![]() |
* | 60 | Berezhiani, L. and Mirbabayi, M., “Unitarity Check in Gravitational Higgs Mechanism”, Phys.
Rev. D, 83, 067701 (2011). [![]() ![]() |
* | 61 | Berezhiani, Z., Comelli, D., Nesti, F. and Pilo, L., “Exact Spherically Symmetric Solutions in
Massive Gravity”, J. High Energy Phys., 2008(07), 130 (2008). [![]() ![]() |
* | 62 | Berg, M., Buchberger, I., Enander, J., Mörtsell, E. and Sjörs, S., “Growth Histories
in Bimetric Massive Gravity”, J. Cosmol. Astropart. Phys., 2012(12), 021 (2012). [![]() ![]() |
* | 63 | Bergshoeff, E. A., de Haan, S., Hohm, O., Merbis, W. and Townsend, P. K., “Zwei-Dreibein
Gravity: A Two-Frame-Field Model of 3D Massive Gravity”, Phys. Rev. Lett., 111, 111102
(2013). [![]() ![]() |
* | 64 | Bergshoeff, E. A., Hohm, O., Rosseel, J. and Townsend, P. K., “On Maximal Massive 3D
Supergravity”, Class. Quantum Grav., 27, 235012 (2010). [![]() ![]() |
* | 65 | Bergshoeff, E. A., Hohm, O., Rosseel, J. and Townsend, P. K., “Modes of Log Gravity”, Phys.
Rev. D, 83, 104038 (2011). [![]() ![]() |
* | 66 | Bergshoeff, E. A., Hohm, O. and Townsend, P. K., “Massive Gravity in Three Dimensions”,
Phys. Rev. Lett., 102, 201301 (2009). [![]() ![]() |
* | 67 | Bergshoeff, E. A., Hohm, O. and Townsend, P. K., “More on Massive 3D Gravity”, Phys. Rev.
D, 79, 124042 (2009). [![]() ![]() |
* | 68 | Beringer, J. et al. (Particle Data Group), “Review of Particle Physics”, Phys. Rev. D, 86,
010001 (2012). [![]() |
* | 69 | Berkhahn, F., Dietrich, D. D. and Hofmann, S., “Self-Protection of Massive Cosmological
Gravitons”, J. Cosmol. Astropart. Phys., 2010(11), 018 (2010). [![]() ![]() |
* | 70 | Berkhahn, F., Hofmann, S. and Niedermann, F., “Brane Induced Gravity: From a No-Go to a
No-Ghost Theorem”, Phys. Rev. D, 86, 124022 (2012). [![]() ![]() |
* | 71 | Berti, E., Buonanno, A. and Will, C. M., “Estimating spinning binary parameters and testing
alternative theories of gravity with LISA”, Phys. Rev. D, 71, 084025 (2005). [![]() ![]() ![]() |
* | 72 | Blas, D., Comelli, D., Nesti, F. and Pilo, L., “Lorentz Breaking Massive Gravity in Curved
Space”, Phys. Rev. D, 80, 044025 (2009). [![]() ![]() |
* | 73 | Blas, D., Deffayet, C. and Garriga, J., “Bigravity and Lorentz-violating massive gravity”, Phys.
Rev. D, 76, 104036 (2007). [![]() ![]() |
* | 74 | Blas, D., Pujolàs, O. and Sibiryakov, S., “Models of non-relativistic quantum gravity: The
good, the bad and the healthy”, J. High Energy Phys., 2011(04), 018 (2011). [![]() ![]() ![]() |
* | 75 | Boulware, D. G. and Deser, S., “Can Gravitation Have a Finite Range?”, Phys. Rev. D, 6,
3368–3382 (1972). [![]() |
* | 76 | Boulware, D. G. and Deser, S., “Classical General Relativity Derived from Quantum Gravity”,
Ann. Phys. (N.Y.), 89, 193 (1975). [![]() |
* | 77 | Brillouin, L., Wave Propagation and Group Velocity, Pure and Applied Physics, 8, (Academic Press, New York, 1960). |
* | 78 | Brown, J. D. and Henneaux, M., “Central charges in the canonical realization of asymptotic
symmetries: An example from three dimensional gravity”, Commun. Math. Phys., 104, 207–226
(1986). [![]() ![]() |
* | 79 | Buchbinder, I. L., Pereira, D. D. and Shapiro, I. L., “One-loop divergences in massive gravity
theory”, Phys. Lett. B, 712, 104–108 (2012). [![]() ![]() |
* | 80 | Burgess, C. P., “Supersymmetric large extra dimensions and the cosmological constant: An
Update”, Ann. Phys. (N.Y.), 313, 283–401 (2004). [![]() ![]() |
* | 81 | Burgess, C. P., “Towards a Natural Theory of Dark Energy: Supersymmetric Large
Extra Dimensions”, in Allen, R. E., Nanopoulos, D. V. and Pope, C. N., eds., The New
Cosmology, Conference on Strings and Cosmology; The Mitchell Symposium on Observational
Cosmology, College Station, Texas, USA, 14 – 17 March; 12 – 16 April 2004, AIP Conference
Proceedings, 743, pp. 417–449, (American Institute of Physics, Melville, NY, 2005). [![]() ![]() |
* | 82 | Burgess, C. P., de Rham, C., Hoover, D., Mason, D. and Tolley, A. J., “Kicking the rugby
ball: Perturbations of 6D gauged chiral supergravity”, J. Cosmol. Astropart. Phys., 2007(02),
009 (2007). [![]() ![]() |
* | 83 | Burgess, C. P., Hoover, D., de Rham, C. and Tasinato, G., “Effective Field Theories and
Matching for Codimension-2 Branes”, J. High Energy Phys., 2009(03), 124 (2009). [![]() ![]() |
* | 84 | Burgess, C. P. and London, D., “Uses and abuses of effective Lagrangians”, Phys. Rev. D, 48,
4337–4351 (1993). [![]() ![]() |
* | 85 | Burgess, C. P., Mattias, J. and Quevedo, F., “MSLED: A Minimal supersymmetric large extra
dimensions scenario”, Nucl. Phys. B, 706, 71–99 (2005). [![]() ![]() |
* | 86 | Burgess, C. P., Quevedo, F., Tasinato, G. and Zavala, I., “General axisymmetric solutions and
self-tuning in 6D chiral gauged supergravity”, J. High Energy Phys., 2004(11), 069 (2004).
[![]() ![]() |
* | 87 | Burrage, C., de Rham, C., Heisenberg, L. and Tolley, A. J., “Chronology Protection in Galileon
Models and Massive Gravity”, J. Cosmol. Astropart. Phys., 2012(07), 004 (2012). [![]() ![]() |
* | 88 | Burrage, C., Kaloper, N. and Padilla, A., “Strong Coupling and Bounds on the Graviton Mass
in Massive Gravity”, Phys. Rev. Lett., 111, 021802 (2013). [![]() ![]() |
* | 89 | Cai, Y.-F., Duplessis, F. and Saridakis, E. N., “F(R) nonlinear massive gravity and
cosmological implications”, arXiv, e-print, (2013). [![]() ![]() |
* | 90 | Cai, Y.-F., Easson, D. A., Gao, C. and Saridakis, E. N., “Charged black holes in nonlinear
massive gravity”, Phys. Rev. D, 87, 064001 (2013). [![]() ![]() |
* | 91 | Cai, Y.-F., Gao, C. and Saridakis, E. N., “Bounce and cyclic cosmology in extended nonlinear
massive gravity”, J. Cosmol. Astropart. Phys., 2012(10), 048 (2012). [![]() ![]() |
* | 92 | Cardoso, A., Koyama, K., Seahra, S. S. and Silva, F. P., “Cosmological perturbations in the
DGP braneworld: Numeric solution”, Phys. Rev. D, 77, 083512 (2008). [![]() ![]() |
* | 93 | Carlip, S., Deser, S., Waldron, A. and Wise, D. K., “Cosmological Topologically Massive
Gravitons and Photons”, Class. Quantum Grav., 26, 075008 (2009). [![]() ![]() |
* | 94 | Chamseddine, A. H. and Mukhanov, V., “Higgs for Graviton: Simple and Elegant Solution”,
J. High Energy Phys., 2010(08), 011 (2010). [![]() ![]() |
* | 95 | Chamseddine, A. H. and Mukhanov, V., “Massive Gravity Simplified: A Quadratic Action”,
J. High Energy Phys., 2011(08), 091 (2011). [![]() ![]() |
* | 96 | Chamseddine, A. H. and Mukhanov, V., “Hidden Ghost in Massive gravity”, J. High Energy
Phys., 2013(03), 092 (2013). [![]() ![]() |
* | 97 | Chamseddine, A. H. and Volkov, M. S., “Cosmological solutions with massive gravitons”,
Phys. Lett. B, 704, 652–654 (2011). [![]() ![]() |
* | 98 | Charmousis, C., Gregory, R., Kaloper, N. and Padilla, A., “DGP Specteroscopy”, J. High
Energy Phys., 2006(10), 066 (2006). [![]() ![]() |
* | 99 | Chkareuli, G. and Pirtskhalava, D., “Vainshtein mechanism in Λ3-theories”, Phys. Lett. B, 713,
99–103 (2012). [![]() ![]() |
* | 100 | Chu, Y.-Z. and Trodden, M., “Retarded Green’s Function Of A Vainshtein System And Galileon
Waves”, Phys. Rev. D, 87, 024011 (2013). [![]() ![]() |
* | 101 | Clement, G., “Black holes with a null Killing vector in new massive gravity in three dimensions”,
Class. Quantum Grav., 26, 165002 (2009). [![]() ![]() |
* | 102 | Clément, G., “Warped AdS3 black holes in new massive gravity”, Class. Quantum Grav., 26,
105015 (2009). [![]() ![]() |
* | 103 | Comelli, D., Crisostomi, M., Nesti, F. and Pilo, L., “Degrees of Freedom in Massive Gravity”,
Phys. Rev. D, 86, 101502 (2012). [![]() ![]() |
* | 104 | Comelli, D., Crisostomi, M., Nesti, F. and Pilo, L., “FRW Cosmology in Ghost Free Massive
Gravity”, J. High Energy Phys., 2012(03), 067 (2012). [![]() ![]() |
* | 105 | Comelli, D., Crisostomi, M., Nesti, F. and Pilo, L., “Spherically Symmetric Solutions in
Ghost-Free Massive Gravity”, Phys. Rev. D, 85, 024044 (2012). [![]() ![]() |
* | 106 | Comelli, D., Crisostomi, M. and Pilo, L., “Perturbations in Massive Gravity Cosmology”, J.
High Energy Phys., 2012(06), 085 (2012). [![]() ![]() |
* | 107 | Comelli, D., Nesti, F. and Pilo, L., “Massive gravity: a general analysis”, J. High Energy Phys.,
2013(07), 161 (2013). [![]() ![]() ![]() |
* | 108 | Comelli, D., Nesti, F. and Pilo, L., “Weak massive gravity”, Phys. Rev. D, 87, 124021 (2013).
[![]() ![]() ![]() |
* | 109 | Comelli, D., Nesti, F. and Pilo, L., “Cosmology in general massive gravity theories”, J. Cosmol.
Astropart. Phys., 2014(05), 036 (2014). [![]() ![]() ![]() |
* | 110 | Creminelli, P., Hinterbichler, K., Khoury, J., Nicolis, A. and Trincherini, E., “Subluminal
Galilean Genesis”, J. High Energy Phys., 2013(02), 006 (2013). [![]() ![]() |
* | 111 | Creminelli, P., Nicolis, A., Papucci, M. and Trincherini, E., “Ghosts in massive gravity”, J.
High Energy Phys., 2005(09), 003 (2005). [![]() ![]() |
* | 112 | Creminelli, P., Nicolis, A. and Trincherini, E., “Galilean Genesis: An Alternative to inflation”,
J. Cosmol. Astropart. Phys., 2010(11), 021 (2010). [![]() ![]() |
* | 113 | Creminelli, P., Serone, M. and Trincherini, E., “Non-linear Representations of the Conformal
Group and Mapping of Galileons”, J. High Energy Phys., 2013(10), 040 (2013). [![]() ![]() |
* | 114 | Cuadros-Melgar, B., Papantonopoulos, E., Tsoukalas, M. and Zamarias, V., “Massive Gravity
with Anisotropic Scaling”, Phys. Rev. D, 85, 124035 (2012). [![]() ![]() |
* | 115 | Curtright, T. L. and Fairlie, D. B., “A Galileon Primer”, arXiv, e-print, (2012). [![]() ![]() |
* | 116 | D’Amico, G., “Cosmology and perturbations in massive gravity”, Phys. Rev. D, 86, 124019
(2012). [![]() ![]() |
* | 117 | D’Amico, G., de Rham, C., Dubovsky, S., Gabadadze, G., Pirtskhalava, D. and Tolley,
A. J., “Massive Cosmologies”, Phys. Rev. D, 84, 124046 (2011). [![]() ![]() ![]() |
* | 118 | D’Amico, G., Gabadadze, G., Hui, L. and Pirtskhalava, D., “On Cosmological Perturbations
of Quasidilaton”, Class. Quantum Grav., 30, 184005 (2013). [![]() ![]() |
* | 119 | D’Amico, G., Gabadadze, G., Hui, L. and Pirtskhalava, D., “Quasidilaton: Theory and
cosmology”, Phys. Rev. D, 87, 064037 (2013). [![]() ![]() |
* | 120 | Damour, T., Gibbons, G. W. and Gundlach, C., “Dark Matter, Time-Varying G, and a Dilaton
Field”, Phys. Rev. Lett., 64, 123–126 (1990). [![]() ![]() |
* | 121 | Damour, T., Kogan, I. I. and Papazoglou, A., “Spherically symmetric spacetimes in massive
gravity”, Phys. Rev. D, 67, 064009 (2003). [![]() ![]() |
* | 122 | Damour, T. and Polyakov, A. M., “The String dilaton and a least coupling principle”, Nucl.
Phys. B, 423, 532–558 (1994). [![]() ![]() |
* | 123 | De Felice, A., GümrükçüoÄlu, A. E., Lin, C. and Mukohyama, S., “Nonlinear stability of
cosmological solutions in massive gravity”, J. Cosmol. Astropart. Phys., 2013(05), 035 (2013).
[![]() ![]() |
* | 124 | De Felice, A., GümrükçüoÄlu, A. E., Lin, C. and Mukohyama, S., “On the cosmology of
massive gravity”, Class. Quantum Grav., 30, 184004 (2013). [![]() ![]() |
* | 125 | De Felice, A., GümrükçüoÄlu, A. E. and Mukohyama, S., “Massive Gravity: Nonlinear
Instability of the Homogeneous and Isotropic Universe”, Phys. Rev. Lett., 109, 171101 (2012).
[![]() ![]() |
* | 126 | De Felice, A., GümrükçüoÄlu, A. E. and Mukohyama, S., “Generalized quasidilaton
theory”, Phys. Rev. D, 88, 124006 (2013). [![]() ![]() ![]() |
* | 127 | De Felice, A. and Mukohyama, S., “Towards consistent extension of quasidilaton massive
gravity”, Phys. Lett. B, 728, 622–625 (2014). [![]() ![]() ![]() |
* | 128 | De Felice, A. and Tsujikawa, S., “f(R) Theories”, Living Rev. Relativity, 13, lrr-2010-3 (2010).
[![]() ![]() ![]() http://www.livingreviews.org/lrr-2010-3. |
* | 129 | de Fromont, P., de Rham, C., Heisenberg, L. and Matas, A., “Superluminality in the Bi- and
Multi-Galileon”, J. High Energy Phys., 2013(07), 067 (2013). [![]() ![]() |
* | 130 | de Rham, C., “Classical Renormalization of Codimension-two Brane Couplings”, in Rajantie,
A., Contaldi, C., Dauncey, P. and Stoica, H., eds., Particles, Strings, and Cosmology, 13th
International Symposium on Particles, Strings, and Cosmology-PASCOS 2007, London, UK,
2 – 7 July 2007, AIP Conference Proceedings, 957, pp. 309–312, (American Institute of Physics,
Melville, NY, 2007). [![]() ![]() |
* | 131 | de Rham, C., “The effective field theory of codimension-two branes”, J. High Energy Phys.,
2008(01), 060 (2008). [![]() ![]() |
* | 132 | de Rham, C., “Cascading Gravity and Degravitation”, Can. J. Phys., 87, 201–203 (2009).
[![]() ![]() |
* | 133 | de Rham, C., “Massive gravity from Dirichlet boundary conditions”, Phys. Lett. B, 688,
137–141 (2010). [![]() ![]() |
* | 134 | de Rham, C., “Galileons in the Sky”, C. R. Physique, 13, 666–681 (2012). [![]() ![]() |
* | 135 | de Rham, C., Dvali, G., Hofmann, S., Khoury, J., Pujolàs, O., Redi, M. and Tolley, A. J.,
“Cascading Gravity: Extending the Dvali–Gabadadze–Porrati Model to Higher Dimension”,
Phys. Rev. Lett., 100, 251603 (2008). [![]() ![]() ![]() |
* | 136 | de Rham, C., Fasiello, M. and Tolley, A. J., “Galileon Duality”, Phys. Lett. B, 733, 46–51
(2014). [![]() ![]() ![]() |
* | 137 | de Rham, C. and Gabadadze, G., “Generalization of the Fierz–Pauli Action”, Phys. Rev. D,
82, 044020 (2010). [![]() ![]() |
* | 138 | de Rham, C. and Gabadadze, G., “Selftuned Massive Spin-2”, Phys. Lett. B, 693, 334–338
(2010). [![]() ![]() |
* | 139 | de Rham, C., Gabadadze, G., Heisenberg, L. and Pirtskhalava, D., “Cosmic Acceleration and
the Helicity-0 Graviton”, Phys. Rev. D, 83, 103516 (2011). [![]() ![]() |
* | 140 | de Rham, C., Gabadadze, G., Heisenberg, L. and Pirtskhalava, D., “Nonrenormalization and
naturalness in a class of scalar-tensor theories”, Phys. Rev. D, 87, 085017 (2013). [![]() ![]() |
* | 141 | de Rham, C., Gabadadze, G., Pirtskhalava, D., Tolley, A. J. and Yavin, I., “Nonlinear
Dynamics of 3D Massive Gravity”, J. High Energy Phys., 2011(06), 028 (2011). [![]() ![]() |
* | 142 | de Rham, C., Gabadadze, G. and Tolley, A. J., “Comments on (super)luminality”, arXiv,
e-print, (2011). [![]() ![]() |
* | 143 | de Rham, C., Gabadadze, G. and Tolley, A. J., “Helicity Decomposition of Ghost-free Massive
Gravity”, J. High Energy Phys., 2011(11), 093 (2011). [![]() ![]() |
* | 144 | de Rham, C., Gabadadze, G. and Tolley, A. J., “Resummation of Massive Gravity”, Phys.
Rev. Lett., 106, 231101 (2011). [![]() ![]() ![]() |
* | 145 | de Rham, C., Gabadadze, G. and Tolley, A. J., “Ghost free massive gravity in the Stückelberg
language”, Phys. Lett. B, 711, 190–195 (2012). [![]() ![]() |
* | 146 | de Rham, C., Heisenberg, L. and Ribeiro, R. H., “Quantum Corrections in Massive Gravity”,
Phys. Rev. D, 88, 084058 (2013). [![]() ![]() |
* | 147 | de Rham, C., Hinterbichler, K., Rosen, R. A. and Tolley, A. J., “Evidence for and obstructions
to nonlinear partially massless gravity”, Phys. Rev. D, 88, 024003 (2013). [![]() ![]() |
* | 148 | de Rham, C., Hofmann, S., Khoury, J. and Tolley, A. J., “Cascading Gravity and
Degravitation”, J. Cosmol. Astropart. Phys., 2008(02), 011 (2008). [![]() ![]() |
* | 149 | de Rham, C., Khoury, J. and Tolley, A. J., “Flat 3-brane with Tension in Cascading Gravity”,
Phys. Rev. Lett., 103, 161601 (2009). [![]() ![]() |
* | 150 | de Rham, C., Khoury, J. and Tolley, A. J., “Cascading Gravity is Ghost Free”, Phys. Rev. D,
81, 124027 (2010). [![]() ![]() |
* | 151 | de Rham, C., Matas, A. and Tolley, A. J., “Galileon Radiation from Binary Systems”, Phys.
Rev. D, 87, 064024 (2013). [![]() ![]() |
* | 152 | de Rham, C., Matas, A. and Tolley, A. J., “Deconstructing Dimensions and Massive Gravity”,
Class. Quantum Grav., 31, 025004 (2014). [![]() ![]() |
* | 153 | de Rham, C., Matas, A. and Tolley, A. J., “New kinetic interactions for massive gravity?”,
Class. Quantum Grav., 31, 165004 (2014). [![]() ![]() ![]() |
* | 154 | de Rham, C. and Renaux-Petel, S., “Massive Gravity on de Sitter and Unique Candidate
for Partially Massless Gravity”, J. Cosmol. Astropart. Phys., 2013(01), 035 (2013). [![]() ![]() |
* | 155 | de Rham, C. and Tolley, A. J., “Gravitational waves in a codimension two braneworld”, J.
Cosmol. Astropart. Phys., 2006(02), 003 (2006). [![]() ![]() |
* | 156 | de Rham, C. and Tolley, A. J., “Mimicking Λ with a spin-two ghost condensate”, J. Cosmol.
Astropart. Phys., 2006(07), 004 (2006). [![]() ![]() |
* | 157 | de Rham, C. and Tolley, A. J., “DBI and the Galileon reunited”, J. Cosmol. Astropart. Phys.,
2010(05), 015 (2010). [![]() ![]() |
* | 158 | de Rham, C., Tolley, A. J. and Wesley, D. H., “Vainshtein mechanism in binary pulsars”,
Phys. Rev. D, 87, 044025 (2013). [![]() ![]() |
* | 159 | Deffayet, C., “Cosmology on a brane in Minkowski bulk”, Phys. Lett. B, 502, 199–208 (2001).
[![]() ![]() |
* | 160 | Deffayet, C., “Spherically symmetric solutions of massive gravity”, Class. Quantum Grav., 25,
154007 (2008). [![]() |
* | 161 | Deffayet, C., Deser, S. and Esposito-Farèse, G., “Generalized Galileons: All scalar models
whose curved background extensions maintain second-order field equations and stress tensors”,
Phys. Rev. D, 80, 064015 (2009). [![]() ![]() |
* | 162 | Deffayet, C., Dvali, G. and Gabadadze, G., “Comments on ‘A Supernova Brane Scan”’, arXiv,
e-print, (2001). [![]() ![]() |
* | 163 | Deffayet, C., Dvali, G. and Gabadadze, G., “Accelerated universe from gravity leaking to extra
dimensions”, Phys. Rev. D, 65, 044023 (2002). [![]() ![]() |
* | 164 | Deffayet, C., Dvali, G., Gabadadze, G. and Lue, A., “Braneworld flattening by a cosmological
constant”, Phys. Rev. D, 64, 104002 (2001). [![]() ![]() |
* | 165 | Deffayet, C., Dvali, G., Gabadadze, G. and Vainshtein, A. I., “Nonperturbative continuity
in graviton mass versus perturbative discontinuity”, Phys. Rev. D, 65, 044026 (2002). [![]() ![]() |
* | 166 | Deffayet, C., Esposito-Farèse, G. and Vikman, A., “Covariant Galileon”, Phys. Rev. D, 79,
084003 (2009). [![]() ![]() |
* | 167 | Deffayet, C. and Jacobson, T., “On horizon structure of bimetric spacetimes”, Class. Quantum
Grav., 29, 065009 (2012). [![]() ![]() |
* | 168 | Deffayet, C. and Mourad, J., “Multigravity from a discrete extra dimension”, Phys. Lett. B,
589, 48–58 (2004). [![]() ![]() |
* | 169 | Deffayet, C. and Mourad, J., “Some properties of multigravity theories and discretized brane
worlds”, Int. J. Theor. Phys., 43, 855–864 (2004). [![]() |
* | 170 | Deffayet, C. and Mourad, J., “Deconstruction of gravity”, Int. J. Theor. Phys., 44, 1743–1752
(2005). [![]() |
* | 171 | Deffayet, C., Mourad, J. and Zahariade, G., “Covariant constraints in ghost free massive
gravity”, J. Cosmol. Astropart. Phys., 2013(01), 032 (2013). [![]() ![]() |
* | 172 | Deffayet, C., Mourad, J. and Zahariade, G., “A note on ‘symmetric’ vielbeins in bimetric,
massive, perturbative and non perturbative gravities”, J. High Energy Phys., 2013(03), 086
(2013). [![]() ![]() |
* | 173 | Deffayet, C. and Rombouts, J.-W., “Ghosts, strong coupling and accidental symmetries in
massive gravity”, Phys. Rev. D, 72, 044003 (2005). [![]() ![]() |
* | 174 | Delbourgo, R. and Salam, A., “The Stueckelberg formalism for spin two”, Lett. Nuovo Cimento,
12, 297–299 (1975). [![]() |
* | 175 | Deser, S., “Self-interaction and gauge invariance”, Gen. Relativ. Gravit., 1, 9–18 (1970). [![]() ![]() ![]() |
* | 176 | Deser, S., “Ghost-Free, Finite, Fourth-Order D = 3 Gravity”, Phys. Rev. Lett., 103, 101302
(2009). [![]() ![]() |
* | 177 | Deser, S., Izumi, K., Ong, Y. C. and Waldron, A., “Massive Gravity Acausality Redux”, Phys.
Lett. B, 726, 544–548 (2013). [![]() ![]() |
* | 178 | Deser, S., Izumi, K., Ong, Y. C. and Waldron, A., “Superluminal Propagation and Acausality
of Nonlinear Massive Gravity”, in Phua, K. K., Kwek, L. C., Chang, N. P. and Chan, A. H.,
eds., Proceedings of the Conference in Honour of the 90th Birthday of Freeman Dyson, Nanyang
Technological University, Singapore, 26 – 29 August 2013, pp. 430–435, (World Scientific,
Singapore; Hackensack, NJ, 2014). [![]() ![]() ![]() |
* | 179 | Deser, S., Jackiw, R. and Templeton, S., “Three-Dimensional Massive Gauge Theories”, Phys.
Rev. Lett., 48, 975–978 (1982). [![]() |
* | 180 | Deser, S., Jackiw, R. and Templeton, S., “Topologically Massive Gauge Theories”, Ann. Phys.
(N.Y.), 140, 372–411 (1982). [![]() |
* | 181 | Deser, S., Joung, E. and Waldron, A., “Gravitational- and self-coupling of partially massless
spin 2”, Phys. Rev. D, 86, 104004 (2012). [![]() ![]() |
* | 182 | Deser, S. and Kay, J. H., “Topologically massive supergravity”, Phys. Lett. B, 120, 97–100
(1983). [![]() |
* | 183 | Deser, S., Liu, H., Lü, H., Pope, C. N., ĊiĊman, T. Ç. and Tekin, B., “Critical Points
of D-Dimensional Extended Gravities”, Phys. Rev. D, 83, 061502 (2011). [![]() ![]() ![]() |
* | 184 | Deser, S., Sandora, M. and Waldron, A., “No consistent bimetric gravity?”, Phys. Rev. D, 88,
081501 (2013). [![]() ![]() ![]() |
* | 185 | Deser, S., Sandora, M. and Waldron, A., “Nonlinear Partially Massless from Massive Gravity?”,
Phys. Rev. D, 87, 101501 (2013). [![]() ![]() |
* | 186 | Deser, S. and Tekin, B., “Newtonian counterparts of spin 2 massless discontinuities”, Class.
Quantum Grav., 18, L171–L174 (2001). [![]() ![]() |
* | 187 | Deser, S. and van Nieuwenhuizen, P., “Nonrenormalizability of the quantized Dirac–Einstein
system”, Phys. Rev. D, 10, 411–420 (1974). [![]() |
* | 188 | Deser, S. and Waldron, A., “Null propagation of partially massless higher spins in
(A)dS and cosmological constant speculations”, Phys. Lett. B, 513, 137–141 (2001). [![]() ![]() |
* | 189 | Deser, S. and Waldron, A., “Partial masslessness of higher spins in (A)dS”, Nucl. Phys. B,
607, 577–604 (2001). [![]() ![]() |
* | 190 | Deser, S. and Waldron, A., “Stability of massive cosmological gravitons”, Phys. Lett., 508,
347–353 (2001). [![]() ![]() |
* | 191 | Deser, S. and Waldron, A., “Conformal invariance of partially massless higher spins”, Phys.
Lett. B, 603, 30 (2004). [![]() ![]() |
* | 192 | Deser, S. and Waldron, A., “Acausality of Massive Gravity”, Phys. Rev. Lett., 110, 111101
(2013). [![]() ![]() ![]() |
* | 193 | Deser, S. and Waldron, A., “Non-Einstein source effects in massive gravity”, Phys. Rev. D, 89,
027503 (2013). [![]() ![]() ![]() |
* | 194 | Deser, S. and Waldron, A., “PM = EM? Partially massless duality invariance”, Phys. Rev. D,
87, 087702 (2013). [![]() ![]() ![]() |
* | 195 | Deser, S. and Woodard, R. P., “Nonlocal Cosmology”, Phys. Rev. Lett., 99, 111301 (2007).
[![]() ![]() |
* | 196 | Deser, S. and Yang, Z., “Is topologically massive gravity renormalizable?”, Class. Quantum
Grav., 7, 1603–1612 (1990). [![]() |
* | 197 | Dilkes, F. A., Duff, M. J., Liu, J. T. and Sati, H., “Quantum discontinuity between zero and
infinitesimal graviton mass with a Lambda term”, Phys. Rev. Lett., 87, 041301 (2001). [![]() ![]() ![]() |
* | 198 | Do, T. Q. and Kao, W. F., “Anisotropically expanding universe in massive gravity”, Phys.
Rev. D, 88, 063006 (2013). [![]() ![]() |
* | 199 | Dubovsky, S., Gregoire, T., Nicolis, A. and Rattazzi, R., “Null energy condition
and superluminal propagation”, J. High Energy Phys., 2006(03), 025 (2006). [![]() ![]() |
* | 200 | Dubovsky, S. L., “Phases of massive gravity”, J. High Energy Phys., 2004(10), 076 (2004).
[![]() ![]() |
* | 201 | Dubovsky, S. L., Tinyakov, P. G. and Tkachev, I. I., “Cosmological attractors in massive
gravity”, Phys. Rev. D, 72, 084011 (2005). [![]() ![]() |
* | 202 | Dubovsky, S. L., Tinyakov, P. G. and Tkachev, I. I., “Massive graviton as a testable cold dark
matter candidate”, Phys. Rev. Lett., 94, 181102 (2005). [![]() ![]() |
* | 203 | Duff, M. J., “Twenty years of the Weyl anomaly”, Class. Quantum Grav., 11, 1387–1404
(1994). [![]() ![]() |
* | 204 | Duff, M. J., Liu, J. T. and Sati, H., “Quantum discontinuity for massive spin 3/2 with a
Lambda term”, Nucl. Phys. B, 680, 117–130 (2004). [![]() ![]() |
* | 205 | Dvali, G., “Classicalize or not to Classicalize?”, arXiv, e-print, (2011). [![]() ![]() |
* | 206 | Dvali, G., Franca, A. and Gomez, C., “Road Signs for UV-Completion”, arXiv, e-print, (2012).
[![]() ![]() |
* | 207 | Dvali, G. and Gabadadze, G., “Gravity on a brane in infinite-volume extra space”, Phys. Rev.
D, 63, 065007 (2001). [![]() ![]() ![]() |
* | 208 | Dvali, G., Gabadadze, G. and Porrati, M., “4D gravity on a brane in 5D Minkowski space”,
Phys. Lett. B, 485, 208–214 (2000). [![]() ![]() ![]() |
* | 209 | Dvali, G., Gabadadze, G. and Porrati, M., “Metastable gravitons and infinite volume extra
dimensions”, Phys. Lett. B, 484, 112–118 (2000). [![]() ![]() ![]() |
* | 210 | Dvali, G., Gabadadze, G., Pujolàs, O. and Rahman, R., “Domain Walls As Probes Of
Gravity”, Phys. Rev. D, 75, 124013 (2007). [![]() ![]() |
* | 211 | Dvali, G., Gabadadze, G. and Shifman, M., “Diluting Cosmological Constant via Large
Distance Modification of Gravity”, in Olive, K. A., Shifman, M. A. and Voloshin, M. B.,
eds., Continuous Advances in QCD 2002: Arkadyfest – Honoring the 60th Birthday of Arkady
Vainshtein, Proceedings of the Conference, held at the University of Minnesota, USA, 17 – 23
May 2002, pp. 566–581, (World Scientific, Singapore; River Edge, NJ, 2002). [![]() ![]() ![]() |
* | 212 | Dvali, G., Gabadadze, G. and Shifman, M., “Diluting cosmological constant in infinite volume
extra dimensions”, Phys. Rev. D, 67, 044020 (2003). [![]() ![]() |
* | 213 | Dvali, G., Giudice, G. F., Gomez, C. and Kehagias, A., “UV-Completion by Classicalization”,
J. High Energy Phys., 2011(08), 108 (2011). [![]() ![]() |
* | 214 | Dvali, G. and Gomez, C., “Self-Completeness of Einstein Gravity”, arXiv, e-print, (2010).
[![]() ![]() |
* | 215 | Dvali, G., Gruzinov, A. and Zaldarriaga, M., “The accelerated universe and the Moon”, Phys.
Rev. D, 68, 024012 (2003). [![]() ![]() |
* | 216 | Dvali, G., Hofmann, S. and Khoury, J., “Degravitation of the cosmological constant and
graviton width”, Phys. Rev. D, 76, 084006 (2007). [![]() ![]() |
* | 217 | Dvali, G. and Turner, M. S., “Dark energy as a modification of the Friedmann equation”,
arXiv, e-print, (2003). [![]() ![]() |
* | 218 | Easson, D. A., Sawicki, I. and Vikman, A., “When Matter Matters”, J. Cosmol. Astropart.
Phys., 2013(07), 014 (2013). [![]() ![]() |
* | 219 | Elder, B., Joyce, A. and Khoury, J., “From Satisfying to Violating the Null Energy Condition”,
Phys. Rev. D, 89, 044027 (2014). [![]() ![]() ![]() |
* | 220 | Evslin, J. and Qiu, T., “Closed Timelike Curves in the Galileon Model”, J. High Energy Phys.,
2011(11), 032 (2011). [![]() ![]() |
* | 221 | Fairbairn, M. and Goobar, A., “Supernova limits on brane world cosmology”, Phys. Lett. B,
642, 432–435 (2006). [![]() ![]() |
* | 222 | Fang, W., Wang, S., Hu, W., Haiman, Z., Hui, L. and May, M., “Challenges to the DGP model
from horizon-scale growth and geometry”, Phys. Rev. D, 78, 103509 (2008). [![]() ![]() ![]() |
* | 223 | Fasiello, M. and Tolley, A. J., “Cosmological perturbations in Massive Gravity and the Higuchi
bound”, J. Cosmol. Astropart. Phys., 2012(11), 035 (2012). [![]() ![]() |
* | 224 | Fasiello, M. and Tolley, A. J., “Cosmological Stability Bound in Massive Gravity and
Bigravity”, J. Cosmol. Astropart. Phys., 2013(12), 002 (2013). [![]() ![]() ![]() |
* | 225 | Feynman, R. P., Morinigo, F. B. and Wagner, W. G., Feynman Lectures on Gravitation, (Addison-Wesley, Reading, MA, 1995). |
* | 226 | Fierz, M. and Pauli, W., “On relativistic wave equations for particles of arbitrary spin in an
electromagnetic field”, Proc. R. Soc. London, Ser. A, 173, 211–232 (1939). [![]() ![]() |
* | 227 | Flory, M. and Sachs, I., “Dynamical black holes in 2+1 dimensions”, Phys. Rev. D, 88, 044034
(2013). [![]() ![]() |
* | 228 | Foffa, S., Maggiore, M. and Mitsou, E., “Cosmological dynamics and dark energy from non-local
infrared modifications of gravity”, arXiv, e-print, (2013). [![]() ![]() |
229 | Foffa, S., Maggiore, M. and Mitsou, E., “Apparent ghosts and spurious degrees of freedom in
non-local theories”, Phys. Lett. B, 733, 76–83 (2014). [![]() ![]() ![]() |
|
* | 230 | Folkerts, S., Germani, C. and Wintergerst, N., “Massive spin-2 theories”, arXiv, e-print, (2013).
[![]() ![]() |
* | 231 | Folkerts, S., Pritzel, A. and Wintergerst, N., “On ghosts in theories of self-interacting massive
spin-2 particles”, arXiv, e-print, (2011). [![]() ![]() |
* | 232 | Gabadadze, G., “ICTP lectures on large extra dimensions”, arXiv, e-print, (2003). [![]() ![]() |
* | 233 | Gabadadze, G., “A Model for Cosmic Self-Acceleration”, arXiv, e-print, (2006). [![]() ![]() |
* | 234 | Gabadadze, G., “Cargèse Lectures on Brane Induced Gravity”, Nucl. Phys. B (Proc. Suppl.),
171, 88–98 (2007). [![]() ![]() |
* | 235 | Gabadadze, G., “General relativity with an auxiliary dimension”, Phys. Lett. B, 681, 89–95
(2009). [![]() ![]() |
* | 236 | Gabadadze, G. and Grisa, L., “Lorentz-violating massive gauge and gravitational fields”, Phys.
Lett. B, 617, 124–132 (2005). [![]() ![]() |
* | 237 | Gabadadze, G., Hinterbichler, K., Khoury, J., Pirtskhalava, D. and Trodden, M., “Covariant
master theory for novel Galilean invariant models and massive gravity”, Phys. Rev. D, 86,
124004 (2012). [![]() ![]() |
* | 238 | Gabadadze, G., Hinterbichler, K., Pirtskhalava, D. and Shang, Y., “On the Potential for
General Relativity and its Geometry”, Phys. Rev. D, 88, 084003 (2013). [![]() ![]() |
* | 239 | Gabadadze, G., Kimura, R. and Pirtskhalava, D., “Selfacceleration with Quasidilaton”, arXiv,
e-print, (2014). [![]() ![]() |
* | 240 | Gabadadze, G. and Shifman, M., “Softly massive gravity”, Phys. Rev. D, 69, 124032 (2004).
[![]() ![]() |
* | 241 | Gaberdiel, M. R., Grumiller, D. and Vassilevich, D., “Graviton 1-loop partition function
for 3-dimensional massive gravity”, J. High Energy Phys., 2010(11), 094 (2010). [![]() ![]() |
* | 242 | Gallicchio, J. and Yavin, I., “Curvature as a remedy or discretizing gravity in warped
dimensions”, J. High Energy Phys., 2006(05), 079 (2006). [![]() ![]() |
* | 243 | Gannouji, R., Hossain, M. W., Sami, M. and Saridakis, E. N., “Quasidilaton nonlinear massive
gravity: Investigations of background cosmological dynamics”, Phys. Rev. D, 87, 123536 (2013).
[![]() ![]() |
* | 244 | Gannouji, R. and Sami, M., “Vainshtein mechanism in Gauss–Bonnet gravity and Galileon
aether”, Phys. Rev. D, 85, 024019 (2012). [![]() ![]() |
* | 245 | Garbarz, A., Giribet, G. and Vasquez, Y., “Asymptotically AdS3 Solutions to Topologically
Massive Gravity at Special Values of the Coupling Constants”, Phys. Rev. D, 79, 044036 (2009).
[![]() ![]() |
* | 246 | García-Saenz, S., “Behavior of perturbations on spherically symmetric backgrounds in
multi-Galileon theory”, Phys. Rev. D, 87, 104012 (2013). [![]() ![]() |
* | 247 | Garriga, J. and Porrati, M., “Football shaped extra dimensions and the absence of self-tuning”,
J. High Energy Phys., 2004(08), 028 (2004). [![]() ![]() |
* | 248 | Gasperini, M., Piazza, F. and Veneziano, G., “Quintessence as a runaway dilaton”, Phys. Rev.
D, 65, 023508 (2002). [![]() ![]() |
* | 249 | Ghodsi, A. and Moghadassi, M., “Charged Black Holes in New Massive Gravity”, Phys. Lett.
B, 695, 359–364 (2011). [![]() ![]() |
* | 250 | Ghodsi, A. and Yekta, D. M., “Black holes in Born–Infeld extended new massive gravity”,
Phys. Rev. D, 83, 104004 (2011). [![]() ![]() |
* | 251 | Ghodsi, A. and Yekta, D. M., “On Asymptotically AdS-Like Solutions of Three Dimensional
Massive Gravity”, J. High Energy Phys., 2012(06), 131 (2012). [![]() ![]() ![]() |
* | 252 | Ghodsi, A. and Yekta, D. M., “Stability of vacua in New Massive Gravity in different gauges”,
J. High Energy Phys., 2013(08), 095 (2013). [![]() ![]() |
* | 253 | Giribet, G., Oliva, J., Tempo, D. and Troncoso, R., “Microscopic entropy of the
three-dimensional rotating black hole of Bergshoeff–Hohm–Townsend massive gravity”, Phys.
Rev. D, 80, 124046 (2009). [![]() ![]() |
* | 254 | Goldberger, W. D. and Rothstein, I. Z., “Effective field theory of gravity for extended objects”,
Phys. Rev. D, 73, 104029 (2006). [![]() ![]() |
* | 255 | Goldberger, W. D. and Wise, M. B., “Modulus stabilization with bulk fields”, Phys. Rev.
Lett., 83, 4922–4925 (1999). [![]() ![]() |
* | 256 | Goldberger, W. D. and Wise, M. B., “Renormalization group flows for brane couplings”, Phys.
Rev. D, 65, 025011 (2002). [![]() ![]() |
* | 257 | Goldhaber, A. S. and Nieto, M. M., “Mass of the graviton”, Phys. Rev. D, 9, 1119–1121 (1974).
[![]() ![]() |
* | 258 | Golovnev, A., “On the Hamiltonian analysis of non-linear massive gravity”, Phys. Lett. B, 707,
404–408 (2012). [![]() ![]() |
* | 259 | Golovnev, A., “On non-perturbative analysis of massive and bimetric gravity”, arXiv, e-print,
(2014). [![]() ![]() |
* | 260 | Gong, Y., “Growth factor parameterization and modified gravity”, Phys. Rev. D, 78, 123010
(2008). [![]() ![]() |
* | 261 | Goon, G., GümrükçüoÄlu, A. E., Hinterbichler, K., Mukohyama, S. and Trodden, M.,
“Galileons Coupled to Massive Gravity: General Analysis and Cosmological Solutions”, arXiv,
e-print, (2014). [![]() ![]() |
* | 262 | Goon, G. L., Hinterbichler, K. and Trodden, M., “Stability and superluminality of spherical
DBI galileon solutions”, Phys. Rev. D, 83, 085015 (2011). [![]() ![]() |
* | 263 | Gorbunov, D., Koyama, K. and Sibiryakov, S., “More on ghosts in DGP model”, Phys. Rev.
D, 73, 044016 (2006). [![]() ![]() |
* | 264 | Gratia, P., Hu, W. and Wyman, M., “Self-accelerating Massive Gravity: Exact solutions for
any isotropic matter distribution”, Phys. Rev. D, 86, 061504 (2012). [![]() ![]() |
* | 265 | Gratia, P., Hu, W. and Wyman, M., “Self-accelerating Massive Gravity: How Zweibeins
Walk through Determinant Singularities”, Class. Quantum Grav., 30, 184007 (2013). [![]() ![]() |
* | 266 | Gratia, P., Hu, W. and Wyman, M., “Self-accelerating massive gravity: Bimetric determinant
singularities”, Phys. Rev. D, 89, 027502 (2014). [![]() ![]() ![]() |
* | 267 | Green, M. B. and Thorn, C. B., “Continuing between closed and open strings”, Nucl. Phys.
B, 367, 462–484 (1991). [![]() |
* | 268 | Gregory, R. and Laflamme, R., “Black strings and p-branes are unstable”, Phys. Rev. Lett.,
70, 2837–2840 (1993). [![]() ![]() |
* | 269 | Gregory, R. and Laflamme, R., “The instability of charged black strings and p-branes”, Nucl.
Phys. B, 428, 399–434 (1994). [![]() ![]() |
* | 270 | Grumiller, D. and Hohm, O., “AdS3/LCFT2: Correlators in new massive gravity”, Phys. Lett.
B, 686, 264–267 (2010). [![]() ![]() |
* | 271 | Grumiller, D., Jackiw, R. and Johansson, N., “Canonical Analysis of Cosmological
Topologically Massive Gravity at the Chiral Point”, in Grumiller, D., Rebhan, A. and
Vassilevich, D., eds., Fundamental Interactions: A Memorial Volume for Wolfgang Kummer,
20, pp. 363–374, (World Scientific, Singapore; Hackensack, NJ, 2009). [![]() ![]() ![]() |
* | 272 | Grumiller, D. and Johansson, N., “Consistent boundary conditions for cosmological
topologically massive gravity at the chiral point”, Int. J. Mod. Phys. D, 17, 2367–2372 (2008).
[![]() ![]() |
* | 273 | Grumiller, D. and Johansson, N., “Instability in cosmological topologically massive gravity at
the chiral point”, J. High Energy Phys., 2008(07), 134 (2008). [![]() ![]() |
* | 274 | Grumiller, D., Riedler, W., Rosseel, J. and Zojer, T., “Holographic applications of logarithmic
conformal field theories”, J. Phys. A: Math. Theor., 46, 494002 (2013). [![]() ![]() |
* | 275 | Grumiller, D. and Sachs, I., “AdS3/LCFT2 – correlators in cosmological topologically massive
gravity”, J. High Energy Phys., 2010(03), 012 (2010). [![]() ![]() |
* | 276 | Gruzinov, A., “All Fierz–Paulian massive gravity theories have ghosts or superluminal modes”,
arXiv, e-print, (2011). [![]() ![]() |
* | 277 | Gruzinov, A. and Mirbabayi, M., “Stars and Black Holes in Massive Gravity”, Phys. Rev. D,
84, 124019 (2011). [![]() ![]() |
* | 278 | Guarato, P. and Durrer, R., “Perturbations for massive gravity theories”, Phys. Rev. D, 89,
084016 (2014). [![]() ![]() ![]() |
* | 279 | Güllü, İ., ĊiĊman, T. Ç. and Tekin, B., “Born–Infeld extension of new massive gravity”,
Class. Quantum Grav., 27, 162001 (2010). [![]() ![]() ![]() |
* | 280 | Güllü, İ. and Tekin, B., “Spin-spin interactions in massive gravity and higher derivative
gravity theories”, Phys. Lett. B, 728, 268–273 (2014). [![]() ![]() ![]() |
* | 281 | GümrükçüoÄlu, A. E., Hinterbichler, K., Lin, C., Mukohyama, S. and Trodden, M.,
“Cosmological Perturbations in Extended Massive Gravity”, Phys. Rev. D, 88, 024023 (2013).
[![]() ![]() |
* | 282 | GümrükçüoÄlu, A. E., Kuroyanagi, S., Lin, C., Mukohyama, S. and Tanahashi, N.,
“Gravitational wave signal from massive gravity”, Class. Quantum Grav., 29, 235026 (2012).
[![]() ![]() |
* | 283 | GümrükçüoÄlu, A. E., Lin, C. and Mukohyama, S., “Open FRW universes and
self-acceleration from nonlinear massive gravity”, J. Cosmol. Astropart. Phys., 2011(11), 030
(2011). [![]() ![]() |
* | 284 | GümrükçüoÄlu, A. E., Lin, C. and
Mukohyama, S., “Anisotropic Friedmann–Robertson–Walker universe from nonlinear massive
gravity”, Phys. Lett. B, 717, 295–298 (2012). [![]() ![]() |
* | 285 | GümrükçüoÄlu, A. E., Lin, C. and Mukohyama, S., “Cosmological perturbations of
self-accelerating universe in nonlinear massive gravity”, J. Cosmol. Astropart. Phys., 2012(03),
006 (2012). [![]() ![]() |
* | 286 | Guo, Z.-K., Zhu, Z.-H., Alcaniz, J. S. and Zhang, Y.-Z., “Constraints on the DGP model from
recent supernova observations and baryon acoustic oscillations”, Astrophys. J., 646, 1–7 (2006).
[![]() ![]() |
* | 287 | Gupta, S. N., “Gravitation and Electromagnetism”, Phys. Rev., 96, 1683–1685 (1954). [![]() |
* | 288 | Haghani, Z., Sepangi, H. R. and Shahidi, S., “Curvature perturbations of quasidilaton
nonlinear massive gravity”, Phys. Rev. D, 87, 124014 (2013). [![]() ![]() |
* | 289 | Harry, G. M. (LIGO Scientific Collaboration), “Advanced LIGO: The next generation of
gravitational wave detectors”, Class. Quantum Grav., 27, 084006 (2010). [![]() ![]() |
* | 290 | Hassan, S. F., Hofmann, S. and von Strauss, M., “Brane Induced Gravity, its Ghost and the
Cosmological Constant Problem”, J. Cosmol. Astropart. Phys., 2011(01), 020 (2011). [![]() ![]() |
* | 291 | Hassan, S. F. and Rosen, R. A., “Exact Solution to the ‘Auxiliary Extra Dimension’ Model
of Massive Gravity”, Phys. Lett. B, 702, 90–93 (2011). [![]() ![]() |
* | 292 | Hassan, S. F. and Rosen, R. A., “On Non-Linear Actions for Massive Gravity”, J. High Energy
Phys., 2011(07), 009 (2011). [![]() ![]() |
* | 293 | Hassan, S. F. and Rosen, R. A., “Bimetric Gravity from Ghost-free Massive Gravity”, J. High
Energy Phys., 2012(02), 126 (2012). [![]() ![]() |
* | 294 | Hassan, S. F. and Rosen, R. A., “Confirmation of the Secondary Constraint and Absence of
Ghost in Massive Gravity and Bimetric Gravity”, J. High Energy Phys., 2012(04), 123 (2012).
[![]() ![]() |
* | 295 | Hassan, S. F. and Rosen, R. A., “Resolving the Ghost Problem in Nonlinear Massive Gravity”,
Phys. Rev. Lett., 108, 041101 (2012). [![]() ![]() |
* | 296 | Hassan, S. F., Rosen, R. A. and Schmidt-May, A., “Ghost-free Massive Gravity with a General
Reference Metric”, J. High Energy Phys., 2012(02), 026 (2012). [![]() ![]() |
* | 297 | Hassan, S. F., Schmidt-May, A. and von Strauss, M., “Proof of Consistency of Nonlinear
Massive Gravity in the Stúckelberg Formulation”, Phys. Lett. B, 715, 335–339 (2012). [![]() ![]() |
* | 298 | Hassan, S. F., Schmidt-May, A. and von Strauss, M., “Bimetric theory and partial masslessness
with Lanczos–Lovelock terms in arbitrary dimensions”, Class. Quantum Grav., 30, 184010
(2013). [![]() ![]() |
* | 299 | Hassan, S. F., Schmidt-May, A. and von Strauss, M., “Higher Derivative Gravity and
Conformal Gravity From Bimetric and Partially Massless Bimetric Theory”, arXiv, e-print,
(2013). [![]() ![]() |
* | 300 | Hassan, S. F., Schmidt-May, A. and von Strauss, M., “On Consistent Theories of Massive
Spin-2 Fields Coupled to Gravity”, J. High Energy Phys., 2013(05), 086 (2013). [![]() ![]() |
* | 301 | Hassan, S. F., Schmidt-May, A. and von Strauss, M., “On Partially Massless Bimetric Gravity”,
Phys. Lett. B, 726,, 834 (2013). [![]() |
* | 302 | Hawking, S. W., “Chronology protection conjecture”, Phys. Rev. D, 46, 603–611 (1992). [![]() |
* | 303 | Hawking, S. W., “The Chronology Protection Conjecture”, in Sato, H. and Nakamura, T., eds., The Sixth Marcel Grossmann Meeting: on recent developments in theoretical and experimental general relativity, gravitation and relativistic field theories, Proceedings of the meeting held in Kyoto, Japan, 23 – 29 June 1991, pp. 3–16, (World Scientific, Singapore, 1992). |
* | 304 | He, J.-H., Wang, B. and Papantonopoulos, E., “Observational constrains on the DGP
brane-world model with a Gauss–Bonnet term in the bulk”, Phys. Lett. B, 654, 133–138 (2007).
[![]() ![]() |
* | 305 | Henneaux, M., Martínez, C. and Troncoso, R., “Asymptotically anti-de Sitter spacetimes
in topologically massive gravity”, Phys. Rev. D, 79, 081502 (2009). [![]() ![]() |
* | 306 | Henneaux, M. and Rahman, R., “Note on Gauge Invariance and Causal Propagation”, Phys.
Rev. D, 88, 064013 (2013). [![]() ![]() |
* | 307 | Higuchi, A., “Forbidden mass range for spin-2 field theory in de Sitter spacetime”, Nucl. Phys.
B, 282, 397 (1987). [![]() |
* | 308 | Higuchi, A., “Massive symmetric tensor field in spacetimes with a positive cosmological
constant”, Nucl. Phys. B, 325, 745–765 (1989). [![]() |
* | 309 | Hinterbichler, K., “Theoretical Aspects of Massive Gravity”, Rev. Mod. Phys., 84, 671–710
(2012). [![]() ![]() |
* | 310 | Hinterbichler, K., “Ghost-free derivative interactions for a massive graviton”, J. High Energy
Phys., 2013(10), 102 (2013). [![]() ![]() ![]() |
* | 311 | Hinterbichler, K., Joyce, A., Khoury, J. and Miller, G. E. J., “DBI Realizations of the
Pseudo-Conformal Universe and Galilean Genesis Scenarios”, J. Cosmol. Astropart. Phys.,
2012(12), 030 (2012). [![]() ![]() |
* | 312 | Hinterbichler, K., Joyce, A., Khoury, J. and Miller, G. E. J., “Dirac–Born–Infeld Genesis: An
Improved Violation of the Null Energy Condition”, Phys. Rev. Lett., 110, 241303 (2013). [![]() ![]() |
* | 313 | Hinterbichler, K., Nicolis, A. and Porrati, M., “Superluminality in DGP”, J. High Energy Phys.,
2009(09), 089 (2009). [![]() ![]() |
* | 314 | Hinterbichler, K. and Rosen, R. A., “Interacting Spin-2 Fields”, J. High Energy Phys.,
2012(07), 047 (2012). [![]() ![]() |
* | 315 | Hinterbichler, K., Stokes, J. and Trodden, M., “Cosmologies of extended massive gravity”,
Phys. Lett. B, 725, 1–5 (2013). [![]() ![]() |
* | 316 | Hiramatsu, T., Hu, W., Koyama, K. and Schmidt, F., “Equivalence Principle Violation
in Vainshtein Screened Two-Body Systems”, Phys. Rev. D, 87, 063525 (2013). [![]() ![]() |
* | 317 | Hohm, O., Routh, A., Townsend, P. K. and Zhang, B., “On the Hamiltonian form of 3D
massive gravity”, Phys. Rev. D, 86, 084035 (2012). [![]() ![]() |
* | 318 | Hollowood, T. J. and Shore, G. M., “Causality and Micro-Causality in Curved Spacetime”,
Phys. Lett. B, 655, 67–74 (2007). [![]() ![]() |
* | 319 | Huang, Q.-G., Piao, Y.-S. and Zhou, S.-Y., “Mass-varying massive gravity”, Phys. Rev. D, 86,
124014 (2012). [![]() ![]() |
* | 320 | Huang, Q.-G., Zhang, K.-C. and Zhou, S.-Y., “Generalized massive gravity in arbitrary
dimensions and its Hamiltonian formulation”, J. Cosmol. Astropart. Phys., 2013(08), 050
(2013). [![]() ![]() |
* | 321 | Hui, L. and Nicolis, A., “Proposal for an Observational Test of the Vainshtein Mechanism”,
Phys. Rev. Lett., 109, 051304 (2012). [![]() ![]() |
* | 322 | Hulse, R. A. and Taylor, J. H., “Discovery of a pulsar in a binary system”, Astrophys. J., 195,
L51–L53 (1975). [![]() ![]() |
* | 323 | Israel, W., “Singular hypersurfaces and thin shells in general relativity”, Nuovo Cimento B,
44, 1–14 (1966). [![]() |
* | 324 | Israelit, M. and Rosen, N., “A Gauge Covariant Bimetric Theory of Gravitation and
Electromagnetism”, Found. Phys., 19, 33–55 (1989). [![]() |
* | 325 | Izumi, K., Koyama, K. and Tanaka, T., “Unexorcized ghost in DGP brane world”, J. High
Energy Phys., 2007(04), 053 (2007). [![]() ![]() |
* | 326 | Izumi, K. and Ong, Y. C., “An analysis of characteristics in nonlinear massive gravity”, Class.
Quantum Grav., 30, 184008 (2013). [![]() ![]() |
* | 327 | Jaccard, M., Maggiore, M. and Mitsou, E., “Bardeen variables and hidden gauge symmetries in
linearized massive gravity”, Phys. Rev. D, 87, 044017 (2013). [![]() ![]() |
* | 328 | Jaccard, M., Maggiore, M. and Mitsou, E., “Nonlocal theory of massive gravity”, Phys. Rev.
D, 88, 044033 (2013). [![]() ![]() |
* | 329 | Jatkar, D. P. and Sinha, A., “New Massive Gravity and AdS4 Counterterms”, Phys. Rev. Lett.,
106, 171601 (2011). [![]() ![]() |
* | 330 | Joung, E., Lopez, L. and Taronna, M., “Generating functions of (partially-)massless higher-spin
cubic interactions”, J. High Energy Phys., 2013(01), 168 (2013). [![]() ![]() |
* | 331 | Kallen, G., “On the definition of the Renormalization Constants in Quantum Electrodynamics”, Helv. Phys. Acta, 25, 417 (1952). |
* | 332 | Kaloper, N., Padilla, A. and Tanahashi, N., “Galileon Hairs of Dyson Spheres, Vainshtein’s
Coiffure and Hirsute Bubbles”, J. High Energy Phys., 2011(10), 148 (2011). [![]() ![]() |
* | 333 | Kehagias, A., “A conical tear drop as a vacuum-energy drain for the solution of the cosmological
constant problem”, Phys. Lett. B, 600, 133–141 (2004). [![]() ![]() |
* | 334 | Khosravi, N., Niz, G., Koyama, K. and Tasinato, G., “Stability of the Self-accelerating Universe
in Massive Gravity”, J. Cosmol. Astropart. Phys., 2013(08), 044 (2013). [![]() ![]() |
* | 335 | Khoury, J., “Fading gravity and self-inflation”, Phys. Rev. D, 76, 123513 (2007). [![]() ![]() |
* | 336 | Khoury, J., “Les Houches Lectures on Physics Beyond the Standard Model of Cosmology”,
arXiv, e-print, (2013). [![]() ![]() |
* | 337 | Khoury, J. and Wyman, M., “N-body simulations of DGP and degravitation theories”, Phys.
Rev. D, 80, 064023 (2009). [![]() ![]() |
* | 338 | Kimura, R., Kobayashi, T. and Yamamoto, K., “Vainshtein screening in a cosmological
background in the most general second-order scalar-tensor theory”, Phys. Rev. D, 85, 024023
(2012). [![]() ![]() |
* | 339 | Kimura, R. and Yamauchi, D., “Derivative interactions in de Rham–Gabadadze–Tolley massive
gravity”, Phys. Rev. D, 88, 084025 (2013). [![]() ![]() |
* | 340 | Kiritsis, E. and Niarchos, V., “Interacting string multi-verses and holographic instabilities of
massive gravity”, Nucl. Phys. B, 812, 488–524 (2009). [![]() ![]() |
* | 341 | KlusoĊ, J., “Comments about Hamiltonian formulation of non-linear massive gravity with
Stückelberg fields”, J. High Energy Phys., 2012(06), 170 (2012). [![]() ![]() |
* | 342 | KlusoĊ, J., “Hamiltonian Analysis of 1+1 dimensional Massive Gravity”, Phys. Rev. D, 85,
044010 (2012). [![]() ![]() |
* | 343 | KlusoĊ, J., “Nonlinear massive gravity with additional primary constraint and absence of
ghosts”, Phys. Rev. D, 86, 044024 (2012). [![]() ![]() |
* | 344 | KlusoĊ, J., “Note About Hamiltonian Formalism for General Non-Linear Massive Gravity
Action in Stuckelberg Formalism”, arXiv, e-print, (2012). [![]() ![]() |
* | 345 | KlusoĊ, J., “Note About Hamiltonian Structure of Non-Linear Massive Gravity”, J. High
Energy Phys., 2012(01), 013 (2012). [![]() ![]() |
* | 346 | KlusoĊ, J., “Remark about the Hamiltonian formulation of nonlinear massive gravity in
Stückelberg formalism”, Phys. Rev. D, 86, 124005 (2012). [![]() ![]() |
* | 347 | KlusoĊ, J., “Hamiltonian Analysis of Minimal Massive Gravity Coupled to Galileon Tadpole
Term”, J. High Energy Phys., 2013(08), 080 (2013). [![]() ![]() |
* | 348 | KlusoĊ, J., “Hamiltonian Formalism of Bimetric Gravity In Vierbein Formulation”, arXiv,
e-print, (2013). [![]() ![]() |
* | 349 | KlusoĊ, J., “Hamiltonian formalism of general bimetric gravity”, Eur. Phys. J. C, 73, 2553
(2013). [![]() ![]() ![]() |
* | 350 | KlusoĊ, J., “Hamiltonian formalism of particular bimetric gravity model”, Phys. Rev. D, 87,
084017 (2013). [![]() ![]() ![]() |
* | 351 | KlusoĊ, J., “Is Bimetric Gravity Really Ghost Free?”, Int. J. Mod. Phys. A, 28, 1350143
(2013). [![]() ![]() ![]() |
* | 352 | KlusoĊ, J., “Is bimetric gravity really ghost free?”, Int. J. Mod. Phys. A, 28, 1350143 (2013).
[![]() |
* | 353 | KlusoĊ, J., “Note About Consistent Extension of Quasidilaton Massive Gravity”, arXiv,
e-print, (2013). [![]() ![]() |
* | 354 | KlusoĊ, J., Nojiri, S. and Odintsov, S. D., “New proposal for non-linear ghost-free massive
F(R) gravity: Cosmic acceleration and Hamiltonian analysis”, Phys. Lett. B, 726, 918–925
(2013). [![]() ![]() ![]() |
* | 355 | Kobayashi, T., Shiromizu, T. and de Rham, C., “Curvature corrections to the low energy
effective theory in 6D regularized braneworlds”, Phys. Rev. D, 77, 124012 (2008). [![]() ![]() |
* | 356 | Kobayashi, T., Siino, M., Yamaguchi, M. and Yoshida, D., “New Cosmological Solutions in
Massive Gravity”, Phys. Rev. D, 86, 061505 (2012). [![]() ![]() |
* | 357 | Kodama, H. and Arraut, I., “Stability of the Schwarzschild–de Sitter black hole in the
dRGT massive gravity theory”, Prog. Theor. Exp. Phys., 2014, 023E02 (2014). [![]() ![]() ![]() |
* | 358 | Kogan, I. I., Mouslopoulos, S. and Papazoglou, A., “The m → 0 limit for massive graviton
in dS4 and AdS4: How to circumvent the van Dam–Veltman–Zakharov discontinuity”, Phys.
Lett. B, 503, 173–180 (2001). [![]() ![]() |
* | 359 | Kolanovic, M., Porrati, M. and Rombouts, J.-W., “Regularization of brane induced gravity”,
Phys. Rev. D, 68, 064018 (2003). [![]() ![]() |
* | 360 | Koyama, K., “Ghosts in the self-accelerating brane universe”, Phys. Rev. D, 72, 123511 (2005).
[![]() ![]() ![]() |
* | 361 | Koyama, K., “Ghosts in the self-accelerating universe”, Class. Quantum Grav., 24, R231–R253
(2007). [![]() ![]() |
* | 362 | Koyama, K. and Maartens, R., “Structure formation in the dgp cosmological model”, J. Cosmol.
Astropart. Phys., 2006(01), 016 (2006). [![]() ![]() |
* | 363 | Koyama, K., Niz, G. and Tasinato, G., “Analytic Solutions in Nonlinear Massive Gravity”,
Phys. Rev. Lett., 107, 131101 (2011). [![]() ![]() |
* | 364 | Koyama, K., Niz, G. and Tasinato, G., “The self-accelerating universe with vectors in massive
gravity”, J. High Energy Phys., 2011(12), 065 (2011). [![]() ![]() |
* | 365 | Koyama, K., Niz, G. and Tasinato, G., “Strong interactions and exact solutions in nonlinear
massive gravity”, Phys. Rev. D, 84, 064033 (2011). [![]() ![]() |
* | 366 | Koyama, K., Niz, G. and Tasinato, G., “Effective theory for the Vainshtein mechanism from
the Horndeski action”, Phys. Rev. D, 88, 021502 (2013). [![]() ![]() |
* | 367 | Koyama, K. and Silva, F. P., “Nonlinear interactions in a cosmological background
in the Dvali–Gabadadze–Porrati braneworld”, Phys. Rev. D, 75, 084040 (2007). [![]() ![]() |
* | 368 | Kraus, P. and Larsen, F., “Microscopic black hole entropy in theories with higher derivatives”,
J. High Energy Phys., 2005(09), 034 (2005). [![]() ![]() |
* | 369 | Kugo, T. and Ohta, N., “Covariant Approach to the No-ghost Theorem in Massive Gravity”,
arXiv, e-print, (2014). [![]() ![]() |
* | 370 | Kuzenko, S. M., Lindström, U., RoÄek, M., Sachs, I. and Tartaglino-Mazzucchelli, G.,
“Three-dimensional N = 2 supergravity theories: From superspace to components”, Phys. Rev.
D, 89, 085028 (2014). [![]() ![]() ![]() |
* | 371 | Kuzenko, S. M. and Novak, J., “Supergravity-matter actions in three dimensions and
Chern–Simons terms”, J. High Energy Phys., 2014(05), 093 (2014). [![]() ![]() ![]() |
* | 372 | Kwon, Y., Nam, S., Park, J.-D. and Yi, S.-H., “Quasi Normal Modes for New Type Black Holes
in New Massive Gravity”, Class. Quantum Grav., 28, 145006 (2011). [![]() ![]() |
* | 373 | Lee, H. M., “A Comment on the selftuning of cosmological constant with deficit angle on a
sphere”, Phys. Lett. B, 587, 117–120 (2004). [![]() ![]() |
* | 374 | Lehmann, H., “On the properties of propagation functions and renormalization contants of
quantized fields”, Nuovo Cimento, 11, 342–357 (1954). [![]() |
* | 375 | Leon, G., Saavedra, J. and Saridakis, E. N., “Cosmological behavior in extended nonlinear
massive gravity”, Class. Quantum Grav., 30, 135001 (2013). [![]() ![]() |
* | 376 | Li, B., Zhao, G.-B. and Koyama, K., “Exploring Vainshtein mechanism on adaptively
refined meshes”, J. Cosmol. Astropart. Phys., 2013(05), 023 (2013). [![]() ![]() |
* | 377 | Li, W., Song, W. and Strominger, A., “Chiral Gravity in Three Dimensions”, J. High Energy
Phys., 2008(04), 082 (2008). [![]() ![]() |
* | 378 | Lin, C., “Massive Graviton on a Spatial Condensation Web”, arXiv, e-print, (2013). [![]() ![]() |
* | 379 | Lin, C., “SO(3) massive gravity”, Phys. Lett. B, 727, 31–36 (2013). [![]() ![]() |
* | 380 | Liu, Y. and Sun, Y.-W., “Consistent Boundary Conditions for New Massive Gravity in AdS3”,
J. High Energy Phys., 2009(05), 039 (2009). [![]() ![]() |
* | 381 | Liu, Y. and Sun, Y-W., “Note on New Massive Gravity in AdS3”, J. High Energy Phys.,
2009(04), 106 (2009). [![]() ![]() |
* | 382 | Lombriser, L., Hu, W., Fang, W. and Seljak, U., “Cosmological Constraints on DGP Braneworld
Gravity with Brane Tension”, Phys. Rev. D, 80, 063536 (2009). [![]() ![]() |
* | 383 | Lovelock, D., “The Einstein tensor and its generalizations”, J. Math. Phys., 12, 498–501 (1971).
[![]() |
* | 384 | Lu, H. and Pope, C. N., “Critical Gravity in Four Dimensions”, Phys. Rev. Lett., 106, 181302
(2011). [![]() ![]() |
* | 385 | Lue, A., “Global structure of Deffayet (Dvali–Gabadadze–Porrati) cosmologies”, Phys. Rev. D,
67, 064004 (2003). [![]() ![]() |
* | 386 | Lue, A., “The phenomenology of Dvali–Gabadadze–Porrati cosmologies”, Phys. Rep., 423,
1–48 (2006). [![]() ![]() |
* | 387 | Lue, A., Scoccimarro, R. and Starkman, G. D., “Probing Newton’s constant on vast scales:
DGP gravity, cosmic acceleration and large scale structure”, Phys. Rev. D, 69, 124015 (2004).
[![]() ![]() |
* | 388 | Lue, A. and Starkman, G., “Gravitational leakage into extra dimensions: Probing dark energy
using local gravity”, Phys. Rev. D, 67, 064002 (2003). [![]() ![]() |
* | 389 | Luty, M. A., Porrati, M. and Rattazzi, R., “Strong interactions and stability in the DGP
model”, J. High Energy Phys., 2003(09), 029 (2003). [![]() ![]() ![]() |
* | 390 | Maartens, R. and Koyama, K., “Brane-World Gravity”, Living Rev. Relativity, 13, lrr-2010-5
(2010). [![]() ![]() ![]() http://www.livingreviews.org/lrr-2010-5. |
* | 391 | Maartens, R. and Majerotto, E., “Observational constraints on self-accelerating cosmology”,
Phys. Rev. D, 74, 023004 (2006). [![]() ![]() |
* | 392 | MacDowell, S. W. and Mansouri, F., “Unified Geometric Theory of Gravity and Supergravity”,
Phys. Rev. Lett., 38, 739–742 (1977). [![]() |
* | 393 | Maeda, K. and Volkov, M. S., “Anisotropic universes in the ghost-free bigravity”, Phys. Rev.
D, 87, 104009 (2013). [![]() ![]() |
* | 394 | Maggiore, M., “Gravitational wave experiments and early universe cosmology”, Phys. Rep.,
331, 283–367 (2000). [![]() ![]() |
* | 395 | Maggiore, M., “Phantom dark energy from nonlocal infrared modifications of general
relativity”, Phys. Rev. D, 89, 043008 (2014). [![]() ![]() ![]() |
* | 396 | Maldacena, J. M., “The large N limit of superconformal field theories and supergravity”, Adv.
Theor. Math. Phys., 2, 231–252 (1998). [![]() ![]() |
* | 397 | Maloney, A., Song, W. and Strominger, A., “Chiral gravity, log gravity and extremal CFT”,
Phys. Rev. D, 81, 064007 (2010). [![]() ![]() |
* | 398 | Mattingly, D., “Modern Tests of Lorentz Invariance”, Living Rev. Relativity, 8, lrr-2005-5
(2005). [![]() ![]() ![]() http://www.livingreviews.org/lrr-2005-5. |
* | 399 | Milonni, P. W., Fast Light, Slow Light and Left-Handed Light, Series in Optics and
Optoelectronics, (Taylor & Francis, New York, 2005). [![]() |
* | 400 | Mirbabayi, M., “Proof of ghost freedom in de Rham–Gabadadze–Tolley massive gravity”, Phys.
Rev. D, 86, 084006 (2012). [![]() ![]() |
* | 401 | Mirbabayi, M. and Gruzinov, A., “Black hole discharge in massive electrodynamics and black
hole disappearance in massive gravity”, Phys. Rev. D, 88, 064008 (2013). [![]() ![]() |
* | 402 | Modesto, L. and Tsujikawa, S., “Non-local massive gravity”, Phys. Lett. B, 727, 48–56 (2013).
[![]() ![]() |
* | 403 | Mohseni, M., “Exact plane gravitational waves in the de Rham–Gabadadze–Tolley model of
massive gravity”, Phys. Rev. D, 84, 064026 (2011). [![]() ![]() |
* | 404 | Motohashi, H. and Suyama, T., “Self-accelerating solutions in massive gravity on an isotropic
reference metric”, Phys. Rev. D, 86, 081502 (2012). [![]() ![]() |
* | 405 | Movahed, M. Sadegh, Farhang, M. and Rahvar, S., “Recent Observational Constraints
on the DGP Modified Gravity”, Int. J. Theor. Phys., 48, 1203–1230 (2009). [![]() ![]() |
* | 406 | Mukohyama, S., “Extended quasidilaton massive gravity is ghost free”, arXiv, e-print, (2013).
[![]() ![]() |
* | 407 | Narikawa, T., Kobayashi, T., Yamauchi, D. and Saito, R., “Testing general scalar-tensor
gravity and massive gravity with cluster lensing”, Phys. Rev. D, 87, 124006 (2013). [![]() ![]() |
* | 408 | Navarro, I., “Spheres, deficit angles and the cosmological constant”, Class. Quantum Grav.,
20, 3603–3612 (2003). [![]() ![]() |
* | 409 | Navarro, I. and Santiago, J., “Gravity on codimension 2 brane worlds”, J. High Energy Phys.,
2005(02), 007 (2005). [![]() ![]() |
* | 410 | Nibbelink Groot, S., Peloso, M. and Sexton, M., “Nonlinear Properties of Vielbein Massive
Gravity”, Eur. Phys. J. C, 51, 741–752 (2007). [![]() ![]() |
* | 411 | Nicolis, A. and Rattazzi, R., “Classical and quantum consistency of the DGP model”, J. High
Energy Phys., 2004(06), 059 (2004). [![]() ![]() |
* | 412 | Nicolis, A., Rattazzi, R. and Trincherini, E., “Galileon as a local modification of gravity”, Phys.
Rev. D, 79, 064036 (2009). [![]() ![]() ![]() |
* | 413 | Nieuwenhuizen, T. M., “Exact Schwarzschild–de Sitter black holes in a family of massive
gravity models”, Phys. Rev. D, 84, 024038 (2011). [![]() ![]() |
* | 414 | Nilles, H.-P., Papazoglou, A. and Tasinato, G., “Selftuning and its footprints”, Nucl. Phys. B,
677, 405–429 (2004). [![]() ![]() |
* | 415 | Nojiri, S. and Odintsov, S. D., “Ghost-free F(R) bigravity and accelerating cosmology”, Phys.
Lett. B, 716, 377–383 (2012). [![]() ![]() |
* | 416 | Nojiri, S., Odintsov, S. D. and Shirai, N., “Variety of cosmic acceleration models from massive
F(R) bigravity”, J. Cosmol. Astropart. Phys., 2013(05), 020 (2013). [![]() ![]() |
* | 417 | Noller, J., Scargill, J. H. C. and Ferreira, P. G., “Interacting spin-2 fields in the Stückelberg
picture”, J. Cosmol. Astropart. Phys., 2014(02), 007 (2014). [![]() ![]() ![]() |
* | 418 | Oliva, J., Tempo, D. and Troncoso, R., “Three-dimensional black holes, gravitational solitons,
kinks and wormholes for BHT massive gravity”, J. High Energy Phys., 2009(07), 011 (2009).
[![]() ![]() |
* | 419 | Ondo, N. A. and Tolley, A. J., “Complete decoupling limit of ghost-free massive gravity”, J.
High Energy Phys., 2013(11), 059 (2013). [![]() ![]() ![]() |
* | 420 | Ong, Y. C., Izumi, K., Nester, J. M. and Chen, P., “Problems with propagation and time
evolution in f(T) gravity”, Phys. Rev. D, 88, 024019 (2013). [![]() ![]() |
* | 421 | Ostrogradsky, M., “Mémoires sur les équations différentielles relatives au problème des isopérimètres”, Mem. Acad. St. Petersbourg, VI Ser., 4, 385–517 (1850). |
* | 422 | Papantonopoulos, E., Papazoglou, A. and Zamarias, V., “Induced cosmology on a regularized
brane in six-dimensional flux compactification”, Nucl. Phys. B, 797, 520–536 (2008). [![]() ![]() |
* | 423 | Papantonopoulos, E., Zamarias, V. and Papazoglou, A., “Regularization of conical singularities
in warped six-dimensional compactifications”, J. High Energy Phys., 2007(03), 002 (2007).
[![]() ![]() |
* | 424 | Paulos, M. F., “New massive gravity extended with an arbitrary number of curvature
corrections”, Phys. Rev. D, 82, 084042 (2010). [![]() ![]() |
* | 425 | Paulos, M. F. and Tolley, A. J., “Massive Gravity theories and limits of ghost-free bigravity
models”, J. High Energy Phys., 2012(09), 002 (2012). [![]() ![]() |
* | 426 | Peloso, M., Sorbo, L. and Tasinato, G., “Standard 4D gravity on a brane in six-dimensional
flux compactifications”, Phys. Rev. D, 73, 104025 (2006). [![]() ![]() |
* | 427 | Perez, A., Tempo, D. and Troncoso, R., “Gravitational solitons, hairy black holes and phase
transitions in BHT massive gravity”, J. High Energy Phys., 2011(07), 093 (2011). [![]() ![]() |
* | 428 | Peters, P. C. and Mathews, J., “Gravitational Radiation from Point Masses in a Keplerian
Orbit”, Phys. Rev., 131, 435–440 (1963). [![]() ![]() |
* | 429 | Piazza, F. and Tsujikawa, S., “Dilatonic ghost condensate as dark energy”, J. Cosmol.
Astropart. Phys., 2004(07), 004 (2004). [![]() ![]() |
* | 430 | Porrati, M., “No van Dam–Veltman–Zakharov discontinuity in AdS space”, Phys. Lett. B, 498,
92–96 (2001). [![]() ![]() |
* | 431 | Porrati, M., “Higgs Phenomenon for the Graviton in AdS Space”, Mod. Phys. Lett. A, 18,
1793–1802 (2003). [![]() ![]() |
* | 432 | Porrati, M. and Roberts, M. M., “Ghosts of Critical Gravity”, Phys. Rev. D, 84, 024013 (2011).
[![]() ![]() |
* | 433 | Porrati, M. and Rombouts, J.-W., “Strong coupling versus 4D locality in induced gravity”,
Phys. Rev. D, 69, 122003 (2004). [![]() ![]() |
* | 434 | Randall, L., Schwartz, M. D. and Thambyahpillai, S., “Discretizing gravity in warped
spacetime”, J. High Energy Phys., 2005(10), 110 (2005). [![]() ![]() |
* | 435 | Renaux-Petel, S., “On the Vainshtein mechanism in the minimal model of massive gravity”, J.
Cosmol. Astropart. Phys., 2014(03), 043 (2014). [![]() ![]() ![]() |
* | 436 | Rosen, N., “Bimetric Gravitation Theory and PSR 1913+16”, Astrophys. J., 221, 284–285
(1978). [![]() |
* | 437 | Rubakov, V. A., “Lorentz-violating graviton masses: Getting around ghosts, low strong
coupling scale and VDVZ discontinuity”, arXiv, e-print, (2004). [![]() ![]() |
* | 438 | Rubakov, V. A. and Tinyakov, P. G., “Infrared-modified gravities and massive gravitons”,
Phys. Usp., 51, 759–792 (2008). [![]() ![]() |
* | 439 | Sasaki, M., Yeom, D.-H. and Zhang, Y.-L., “Hartle–Hawking no-boundary proposal in dRGT
massive gravity: Making inflation exponentially more probable”, Class. Quantum Grav., 30,
232001 (2013). [![]() ![]() |
* | 440 | Sbisa, F., Niz, G., Koyama, K. and Tasinato, G., “Characterising Vainshtein Solutions in
Massive Gravity”, Phys. Rev. D, 86, 024033 (2012). [![]() ![]() |
* | 441 | Schmidt, F., “Weak lensing probes of modified gravity”, Phys. Rev. D, 78, 043002 (2008).
[![]() ![]() |
* | 442 | Schmidt, F., “Self-consistent cosmological simulations of DGP braneworld gravity”, Phys. Rev.
D, 80, 043001 (2009). [![]() ![]() |
* | 443 | Schwartz, M. D., “Constructing gravitational dimensions”, Phys. Rev. D, 68, 024029 (2003).
[![]() ![]() |
* | 444 | Scoccimarro, R., “Large-scale structure in brane-induced gravity. I. Perturbation theory”, Phys.
Rev. D, 80, 104006 (2009). [![]() ![]() |
* | 445 | Shore, G. M., “Superluminality and UV completion”, Nucl. Phys. B, 778, 219–258 (2007).
[![]() ![]() |
* | 446 | Siegel, W., “Hidden gravity in open string field theory”, Phys. Rev. D, 49, 4144–4153 (1994).
[![]() ![]() |
* | 447 | Sinha, A., “On the new massive gravity and AdS/CFT”, J. High Energy Phys., 2010(06), 061
(2010). [![]() ![]() |
* | 448 | Sjörs, S. and Mörtsell, E., “Spherically Symmetric Solutions in Massive Gravity and
Constraints from Galaxies”, J. High Energy Phys., 2013(02), 080 (2013). [![]() ![]() |
* | 449 | Skenderis, K., Taylor, M. and van Rees, B. C., “Topologically Massive Gravity and
the AdS/CFT Correspondence”, J. High Energy Phys., 2009(09), 045 (2009). [![]() ![]() |
* | 450 | Skvortsov, E. D. and Vasiliev, M. A., “Geometric formulation for partially massless fields”,
Nucl. Phys. B, 756, 117–147 (2006). [![]() ![]() |
* | 451 | Song, Y.-S., “Large Scale Structure Formation of normal branch in DGP brane world model”,
Phys. Rev. D, 77, 124031 (2008). [![]() ![]() |
* | 452 | Song, Y.-S., Sawicki, I. and Hu, W., “Large-scale tests of the Dvali–Gabadadze–Porrati model”,
Phys. Rev. D, 75, 064003 (2007). [![]() ![]() |
* | 453 | Stabenau, H. F. and Jain, B., “N-body simulations of alternative gravity models”, Phys. Rev.
D, 74, 084007 (2006). [![]() ![]() |
* | 454 | Tamanini, N., Saridakis, E. N. and Koivisto, T. S., “The cosmology of interacting spin-2
fields”, J. Cosmol. Astropart. Phys., 2014(02), 015 (2014). [![]() ![]() ![]() |
* | 455 | Tasinato, G., Koyama, K. and Niz, G., “Exact Solutions in Massive Gravity”, Class. Quantum
Grav., 30, 184002 (2013). [![]() ![]() |
* | 456 | Tasinato, G., Koyama, K. and Niz, G., “Vector instabilities and self-acceleration in the
decoupling limit of massive gravity”, Phys. Rev. D, 87, 064029 (2013). [![]() ![]() |
* | 457 | Taylor, J. H.. and Weisberg, J. M., “Further experimental tests of relativistic gravity using
the binary pulsar PSR 1913+16”, Astrophys. J., 345, 434–450 (1989). [![]() ![]() |
* | 458 | Tolley, A. J., Burgess, C. P., de Rham, C. and Hoover, D., “Scaling solutions to 6D gauged
chiral supergravity”, New J. Phys., 8, 324 (2006). [![]() ![]() |
* | 459 | Tolley, A. J., Burgess, C. P., de Rham, C. and Hoover, D., “Exact Wave Solutions to
6D Gauged Chiral Supergravity”, J. High Energy Phys., 2008(07), 075 (2008). [![]() ![]() |
* | 460 | Tolley, A. J., Burgess, C. P., Hoover, D. and Aghababaie, Y., “Bulk singularities and
the effective cosmological constant for higher co-dimension branes”, J. High Energy Phys.,
2006(03), 091 (2006). [![]() ![]() |
* | 461 | Trodden, M., “Generalized Galileons for Particle Physics and Cosmology”, in 36th International
Conference on High Energy Physics, ICHEP 2012, Melbourne, Australia, 4 – 11 July 2012,
Proceedings of Science, PoS(ICHEP2012)464, (SISSA, Trieste, 2012). [![]() ![]() |
* | 462 | Tsujikawa, S., “Dark Energy: Investigation and Modeling”, in Matarrese, S., Colpi, M., Gorini,
V. and Moschella, U., eds., Dark Matter and Dark Energy: A Challenge for Modern Cosmology,
Astrophysics and Space Science Library, 370, pp. 331–402, (Springer, Dordrecht; New York,
2011). [![]() ![]() ![]() |
* | 463 | Vainshtein, A. I., “To the problem of nonvanishing gravitation mass”, Phys. Lett. B, 39,
393–394 (1972). [![]() ![]() |
* | 464 | Vakili, B. and Khosravi, N., “Classical and quantum massive cosmology for the open FRW
universe”, Phys. Rev. D, 85, 083529 (2012). [![]() ![]() |
* | 465 | van Dam, H. and Veltman, M. J. G., “Massive and mass-less Yang–Mills and gravitational
fields”, Nucl. Phys. B, 22, 397–411 (1970). [![]() ![]() |
* | 466 | Vasiliev, M. A., “Higher-spin gauge theories in four, three, and two dimensions”, Int. J. Mod.
Phys. D, 5, 763–797 (1996). [![]() ![]() |
* | 467 | Velo, G. and Zwanziger, D., “Noncausality and Other Defects of Interaction Lagrangians for
Particles with Spin One and Higher”, Phys. Rev., 188, 2218–2222 (1969). [![]() |
* | 468 | Vikman, A., K-essence: cosmology, causality and emergent geometry, Ph.D. thesis,
(Ludwig-Maximilians-Universität, München, 2007). Online version (accessed 24 July 2014):
![]() |
* | 469 | Vikman, A., “Suppressing Quantum Fluctuations in Classicalization”, Europhys. Lett., 101,
34001 (2013). [![]() ![]() |
* | 470 | Vinet, J. and Cline, J. M., “Can codimension-two branes solve the cosmological constant
problem?”, Phys. Rev. D, 70, 083514 (2004). [![]() ![]() |
* | 471 | Vinet, J. and Cline, J. M., “Codimension-two branes in six-dimensional supergravity and
the cosmological constant problem”, Phys. Rev. D, 71, 064011 (2005). [![]() ![]() ![]() |
* | 472 | Visser, M., “Hawking’s chronology protection conjecture: Singularity structure of the quantum
stress energy tensor”, Nucl. Phys. B, 416, 895–906 (1994). [![]() ![]() |
* | 473 | Visser, M., Lorentzian Wormholes: From Einstein to Hawking, AIP Series in Computational and Applied Mathematical Physics, (American Institute of Physics, Woodbury, NY, 1995). |
* | 474 | Volkov, M. S., “Cosmological solutions with massive gravitons in the bigravity theory”, J. High
Energy Phys., 2012(01), 035 (2012). [![]() ![]() |
* | 475 | Volkov, M. S., “Exact self-accelerating cosmologies in the ghost-free bigravity and massive
gravity”, Phys. Rev. D, 86, 061502 (2012). [![]() ![]() |
* | 476 | Volkov, M. S., “Exact self-accelerating cosmologies in the ghost-free massive gravity: The
detailed derivation”, Phys. Rev. D, 86, 104022 (2012). [![]() ![]() |
* | 477 | Volkov, M. S., “Hairy black holes in the ghost-free bigravity theory”, Phys. Rev. D, 85, 124043
(2012). [![]() ![]() |
* | 478 | Volkov, M. S., “Self-accelerating cosmologies and hairy black holes in ghost-free bigravity and
massive gravity”, Class. Quantum Grav., 30, 184009 (2013). [![]() ![]() |
* | 479 | von Strauss, M., Schmidt-May, A., Enander, J., Mortsell, E. and Hassan, S. F., “Cosmological
Solutions in Bimetric Gravity and their Observational Tests”, J. Cosmol. Astropart. Phys.,
2012(03), 042 (2012). [![]() ![]() |
* | 480 | Wald, R. M., “Black hole entropy is the Noether charge”, Phys. Rev. D, 48, R3427–R3431
(1993). [![]() ![]() |
* | 481 | Wan, H.-Y., Yi, Z.-L., Zhang, T.-J. and Zhou, J., “Constraints on the DGP Universe Using
Observational Hubble parameter”, Phys. Lett. B, 651, 352–356 (2007). [![]() ![]() |
* | 482 | Wei, H., “Growth Index of DGP Model and Current Growth Rate Data”, Phys. Lett. B, 664,
1–6 (2008). [![]() ![]() |
* | 483 | Weinberg, S., “Photons and Gravitons in Perturbation Theory: Derivation of Maxwell’s and
Einstein’s Equations”, Phys. Rev. B, 138, 988–1002 (1965). [![]() |
* | 484 | Weinberg, S., “The cosmological constant problem”, Rev. Mod. Phys., 61, 1–23 (1989). [![]() ![]() |
* | 485 | Weisberg, J. M. and Taylor, J. H., “The Relativistic Binary Pulsar B1913+16: Thirty Years
of Observations and Analysis”, in Rasio, F. A. and Stairs, I. H., eds., Binary Radio Pulsars,
Proceedings of a meeting held at the Aspen Center for Physics, Colorado, USA, 12 – 16 January
2004, ASP Conference Series, 328, p. 25, (Astronomical Society of the Pacific, San Francisco,
2005). [![]() ![]() |
* | 486 | Will, C. M., “Bounding the mass of the graviton using gravitational-wave observations
of inspiralling compact binaries”, Phys. Rev. D, 57, 2061–2068 (1998). [![]() ![]() ![]() |
* | 487 | Will, C. M., “The Confrontation between General Relativity and Experiment”, Living Rev.
Relativity, 17, lrr-2014-4 (2014). [![]() ![]() ![]() http://www.livingreviews.org/lrr-2014-4. |
* | 488 | Williams, J. G., Turyshev, S. G. and Boggs, D. H., “Progress in lunar laser ranging tests
of relativistic gravity”, Phys. Rev. Lett., 93, 261101 (2004). [![]() ![]() ![]() |
* | 489 | Wu, D.-J., Piao, Y.-S. and Cai, Y.-F., “Dynamical analysis of the cosmology of mass-varying
massive gravity”, Phys. Lett. B, 721, 7–12 (2013). [![]() ![]() |
* | 490 | Wyman, M., “Galilean-Invariant Scalar Fields Can Strengthen Gravitational Lensing”, Phys.
Rev. Lett., 106, 201102 (2011). [![]() ![]() |
* | 491 | Wyman, M., Hu, W. and Gratia, P., “Self-accelerating massive gravity: Time for field
fluctuations”, Phys. Rev. D, 87, 084046 (2013). [![]() ![]() |
* | 492 | Xu, L., “Confronting DGP braneworld gravity with cosmico observations after Planck data”, J.
Cosmol. Astropart. Phys., 2014(02), 048 (2014). [![]() ![]() ![]() |
* | 493 | Yagi, K., Blas, D., Barausse, E. and Yunes, N., “Constraints on Einstein-Æther theory and
HoĊava gravity from binary pulsar observations”, Phys. Rev. D, 89, 084067 (2013). [![]() ![]() ![]() |
* | 494 | Yagi, K., Blas, D., Yunes, N. and Barausse, E., “Strong Binary Pulsar Constraints on Lorentz
Violation in Gravity”, Phys. Rev. Lett., 112, 161101 (2014). [![]() ![]() ![]() |
* | 495 | Yamashita, Y. and Tanaka, T., “Mapping the ghost free bigravity into braneworld setup”, J.
Cosmol. Astropart. Phys., 2014(06), 004 (2014). [![]() ![]() ![]() |
* | 496 | Yu, S., “Superluminal Vector in Ghost-free Massive Gravity”, arXiv, e-print, (2013). [![]() ![]() |
* | 497 | Zakharov, V. I., “Linearized gravitation theory and the graviton mass”, JETP Lett., 12, 312
(1970). [![]() |
* | 498 | Zhang, Y.-L., Saito, R. and Sasaki, M., “Hawking–Moss instanton in nonlinear massive gravity”,
J. Cosmol. Astropart. Phys., 2013(02), 029 (2013). [![]() ![]() |
* | 499 | Zhang, Y.-L., Saito, R., Yeom, D.-H. and Sasaki, M., “Coleman–de Luccia instanton in
dRGT massive gravity”, J. Cosmol. Astropart. Phys., 2014(02), 022 (2014). [![]() ![]() ![]() |
* | 500 | Zinoviev, Y. M., “On Massive High Spin Particles in (A)dS”, arXiv, e-print, (2001). [![]() ![]() |
* | 501 | Zinoviev, Y. M., “On massive spin 2 interactions”, Nucl. Phys. B, 770, 83–106 (2007). [![]() ![]() |
* | 502 | Zumino, B., “Effective Lagrangians and Broken Symmetries”, in Deser, S., Grisaru, M. and
Pendleton, H., eds., Lectures on Elementary Particles and Quantum Field Theory, Vol. 2,
Brandeis University Summer Institute in Theoretical Physics, p. 437, (MIT Press, Cambridge,
1970). [![]() |