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2026 年 1 月 6 日 星期二 · 数据截至 arXiv / ADS 最新收录日
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Probing beyond-vacuum general relativistic effects with extreme mass-ratio inspirals

Zi, Tieguang, Rahman, Mostafizur, Kumar, Shailesh

原文摘要Abstract

We examine extreme mass-ratio inspirals (EMRIs) as probes of beyond-vacuum general relativistic effects, accounting for both astrophysical environments and scalar Gauss-Bonnet (sGB) gravity. In beyond-vacuum scenarios, the evolution of an EMRI immersed in a cold dark matter environment modifies the gravitational wave flux and introduces additional dissipative effects such as dynamical friction. In parallel, in the beyond-general-relativistic settings such as in sGB gravity, the inspiraling object carries an effective scalar charge and emits scalar radiation. Both environmental and modified-gravity effects modify the flux-balance law, thereby inducing changes in the EMRI dynamics. Using a two-timescale analysis within the fixed-frequency formalism, we compute leading-order corrections to the energy fluxes for quasicircular, equatorial orbits in static, spherically symmetric spacetimes and construct the corresponding gravitational waveforms, which are used to quantify the accumulated gravitational wave dephasing and waveform mismatch relative to the vacuum general relativistic case. We further perform the Fisher information matrix analysis to estimate parameter correlations and the ability of future space-based detectors such as the Laser Interferometer Space Antenna to disentangle environmental and modified-gravity effects. Our results show that both dark matter and scalar-field effects can leave measurable imprints on EMRI waveforms and that a consistent beyond-vacuum treatment is essential for robust tests of gravity.

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用极端质量比旋近探测超越真空的广义相对论效应 · 本论文利用极端质量比旋近研究了冷暗物质环境和标量-高斯-博内引力对引力波波形的影响,并表明LISA等未来探测器能够区分这两种超越真空的效应。

预印本 2026-01-06 · 刊出 2026-07-09 · 收录 2026-07-22