English

Tests of conservation laws in post-Newtonian gravity with binary pulsars

General Relativity and Quantum Cosmology 2020-07-27 v1 High Energy Astrophysical Phenomena High Energy Physics - Phenomenology

Abstract

General relativity is a fully conservative theory, but there exist other possible metric theories of gravity. We consider non-conservative ones with a parameterized post-Newtonian (PPN) parameter, ζ2\zeta_2. A non-zero ζ2\zeta_2 induces a self-acceleration for the center of mass of an eccentric binary pulsar system, which contributes to the second time derivative of the pulsar spin frequency, ν¨\ddot{\nu}. In our work, using the method in Will (1992), we provide an improved analysis with four well-timed, carefully-chosen binary pulsars. In addition, we extend Will's method and derive ζ2\zeta_2's effect on the third time derivative of the spin frequency, ν...\dddot{\nu}. For PSR B1913+16, the constraint from ν...\dddot{\nu} is even tighter than that from ν¨\ddot{\nu}. We combine multiple pulsars with Bayesian inference, and obtain an upper limit, ζ2<1.3×105\left|\zeta_{2}\right|<1.3\times10^{-5} at 95% confidence level, assuming a flat prior in log10ζ2\log_{10} \left| \zeta_{2}\right|. It improves the existing bound by a factor of three. Moreover, we propose an analytical timing formalism for ζ2\zeta_2. Our simulated times of arrival with simplified assumptions show binary pulsars' capability in limiting ζ2\zeta_{2}, and useful clues are extracted for real data analysis in future. In particular, we discover that for PSRs B1913+16 and J0737-3039A, ν...\dddot{\nu} can yield more constraining limits than ν¨\ddot{\nu}.

Keywords

Cite

@article{arxiv.2006.09652,
  title  = {Tests of conservation laws in post-Newtonian gravity with binary pulsars},
  author = {Xueli Miao and Junjie Zhao and Lijing Shao and Norbert Wex and Michael Kramer and Bo-Qiang Ma},
  journal= {arXiv preprint arXiv:2006.09652},
  year   = {2020}
}

Comments

14 pages, 5 figures, 4 tables; accepted by ApJ

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