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We study black hole binary mergers in certain cubic Horndeski theories of gravity, treating them fully non-linearly.
1902
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1904
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A. D. Kovács, Well-posedness of cubic Horndeski theories, Phys. Rev. D 100
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B. J. Owen, Search templates for gravitational waves from inspiraling binaries: Choice of template spacing, Phys. Rev. D 53
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J. G. Baker, M. Campanelli, and C. O. Lousto, The Lazarus project: A Pragmatic approach to binary black hole evolutions, Phys. Rev. D 65
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2005
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2007
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J. Thornburg, Event and apparent horizon finders for 3+1 numerical relativity, Living Rev. Rel. 10
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2007
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2008
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S. Weinberg, Effective Field Theory for Inflation, Phys. Rev. D 77
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M. Alcubierre, Introduction to 3+1 Numerical Relativity (Oxford University Press, 2008)
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L. Barsotti, P. Fritschel, M. Evans, and S. Gras, Updated Advanced LIGO sensitivity design curve , Tech. Rep. T1800044-v5 (The LIGO Scientific Collaboration, 2018)
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T. Andrade, L. A. Salo, J. C. Aurrekoetxea, J. Bamber, K. Clough, R. Croft, E. de Jong, A. Drew, A. Duran, P. G. Ferreira, P. Figueras, H. Finkel, T. França, B.-X. Ge, C. Gu, T. Helfer, J. Jäykkä, C. Joana, M. Kunesch, K. Kornet, E. A. Lim, F. Muia, Z. Nazari, M. Radia, J. Ripley, P. Shellard, U. Sperhake, D. Traykova, S. Tunyasuvunakool, Z. Wang, J. Y. Widdicombe, and K. Wong, Grchombo: An adaptable numerical relativity code for fundamental physics, Journal of Open Source Software 6
2021
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