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The speed of gravitational waves provides us a new tool to test alternative theories of gravity.
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A. De Felice, S. Tsujikawa, Conditions for the cosmological viability of the most general scalar-tensor theories and their applications to extended Galileon dark energy models. JCAP 1202
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I. Dalianis, G. Koutsoumbas, K. Ntrekis, E. Papantonopoulos, Reheating predictions in Gravity Theories with Derivative Coupling. JCAP 1702
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K. Nozari, N. Rashidi, Perturbation, non-Gaussianity, and reheating in a Gauss-Bonnet α \alpha -attractor model. Phys. Rev. D 95
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R.A. Battye, F. Pace, D. Trinh, Gravitational wave constraints on dark sector models. Phys. Rev. D 98
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E. Babichev, C. Charmousis, G. Esposito-Farèse, A. Lehébel, Stability of Black Holes and the Speed of Gravitational Waves within Self-Tuning Cosmological Models. Phys. Rev. Lett. 120
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S. Hou, Y. Gong, Y. Liu, Polarizations of Gravitational Waves in Horndeski Theory. Eur. Phys. J. C 78
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G. Koutsoumbas, K. Ntrekis, E. Papantonopoulos, E.N. Saridakis, Unification of Dark Matter - Dark Energy in Generalized Galileon Theories. JCAP 1802
2018
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