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The propagation of gravitational waves (GWs) at cosmological distances offers a new way to test the gravitational interaction at the largest scales.
1904
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1905
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1908
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1909
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M. Volonteri, F. Haardt and P. Madau, The Assembly and merging history of supermassive black holes in hierarchical models of galaxy formation , Astrophys. J. 582
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S.M. Koushiappas, J.S. Bullock and A. Dekel, Massive black hole seeds from low angular momentum material , Mon. Not. Roy. Astron. Soc. 354
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E. Di Valentino, S. Gariazzo, O. Mena and S. Vagnozzi, Soundness of Dark Energy properties , JCAP 07
2005
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2006
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G. Lodato and P. Natarajan, Supermassive black hole formation during the assembly of pre-galactic discs , Mon. Not. Roy. Astron. Soc. 371
2006
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M.C. Begelman, M. Volonteri and M.J. Rees, Formation of supermassive black holes by direct collapse in pregalactic halos , Mon. Not. Roy. Astron. Soc. 370
2006
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M. Maggiore, Gravitational Waves. Vol. 1: Theory and Experiments , Oxford Master Series in Physics, Oxford University Press (2007)
2007
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C. Deffayet and K. Menou, Probing Gravity with Spacetime Sirens , Astrophys. J. Lett. 668
2007
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2016
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2008
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2008
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S. Weinberg, Cosmology (2008)
2008
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2009
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2009
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2009
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2009
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2009
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2016
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2017
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2017
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2017
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2017
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R.-G. Cai, N. Tamanini and T. Yang, Reconstructing the dark sector interaction with LISA , JCAP 05
2017
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2018
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2019
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2021
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K. Barbary, nestle: Nested sampling algorithms for evaluating Bayesian evidence , Mar., 2021
2021
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V. Gayathri, J. Healy, J. Lange, B. O’Brien, M. Szczepanczyk, I. Bartos et al., Measuring the Hubble Constant with GW190521 as an Eccentric black hole Merger and Its Potential Electromagnetic Counterpart , Astrophys. J. Lett. 908
2021
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