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Reduced-order surrogate models for scalar-tensor gravity in the strong field and applications to binary pulsars and GW170817

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arxiv 1907.00780 v2 pith:IPWADTOV submitted 2019-07-01 gr-qc astro-ph.HEhep-ph

classification gr-qcastro-ph.HEhep-ph
keywords binarymodelsgravitypulsarssurrogategw170817inspiralpystgrom
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We investigate the scalar-tensor gravity of Damour and Esposito-Far\`ese (DEF), which predicts non-trivial phenomena in the nonperturbative strong-field regime for neutron stars (NSs). Instead of solving the modified Tolman-Oppenheimer-Volkoff equations, we construct reduced-order surrogate models, coded in the pySTGROM package, to predict the relations of a NS radius, mass, and effective scalar coupling to its central density. Our models are accurate at $\sim1\%$ level and speed up large-scale calculations by two orders of magnitude. As an application, we use pySTGROM and Markov-chain Monte Carlo techniques to constrain parameters in the DEF theory, with five well-timed binary pulsars, the binary NS (BNS) inspiral GW170817, and a hypothetical BNS inspiral in the Advanced LIGO and next-generation GW detectors. In the future, as more binary pulsars and BNS mergers are detected, our surrogate models will be helpful in constraining strong-field gravity with essential speed and accuracy.

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Cited by 2 Pith papers

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  1. Constraining Dipole Radiation with Multiband Gravitational Waves from Eccentric Binary Black Holes

    gr-qc 2026-04 unverdicted novelty 7.0 of 10

    Multiband observations of eccentric binary black holes can constrain dipole-radiation deviations from general relativity to |b| ≲ 10^{-7} for a GW231123-like event when combining one year of space-based data with grou...

  2. Lorentz-violating matter-gravity couplings in small-eccentricity binary pulsars

    hep-ph 2019-08 accept novelty 6.0 of 10

    Using three small-eccentricity relativistic binary pulsars, this paper obtains order-of-magnitude upper limits on SME matter-gravity coefficients for neutrons, protons, and electrons.

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