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引用次数: 0
摘要
经典黑洞(BH)的视界是一个单向膜,在双黑洞的动态演化过程中起着至关重要的作用,能够完全吸收通量。由这一现象产生的潮汐加热对引力波(GWs)的产生有着显著的影响。如果双星中至少有一个成员是外来紧凑天体(ECO)而不是 BH,那么对通量的吸收预计将是不完全的,潮汐加热也会有所不同。因此,潮汐加热可以用来研究紧凑天体的性质,而不依赖于模型。在本文中,我们假定极端质量比吸积(EMRI)包含一个恒星质量的紧凑天体,围绕一个具有反射面的大质量 ECO 运行,计算一般 EMRI 轨道的 GWs。利用黑洞时空中精确的解析通量公式,我们在 ECO 表面附近调整了这些公式,加入了一个反射率参数。在绝热近似条件下,我们可以演化轨道参数并计算 EMRI 波形。旋转和非旋转物体的潮汐加热效应可以通过计算错配和渔夫信息矩阵,在𝒪(10-6)的水平上约束表面的反射率。
Detecting the tidal heating with the generic extreme mass-ratio inspirals
The horizon of a classical black hole (BH), functioning as a one-way membrane, plays a vital role in the dynamic evolution of binary BHs, capable of absorbing fluxes entirely. Tidal heating, stemming from this phenomenon, exerts a notable influence on the production of gravitational waves (GWs). If at least one member of a binary is an exotic compact object (ECO) instead of a BH, the absorption of fluxes is expected to be incomplete and the tidal heating would be different. Thus, tidal heating can be utilized for model-independent investigations into the nature of compact object. In this paper, assuming that the extreme mass-ratio inspiral (EMRI) contains a stellar-mass compact object orbiting around a massive ECO with a reflective surface, we compute the GWs from the generic EMRI orbits. Using the accurate and analytic flux formulas in the black hole spacetime, we adapted these formulas in the vicinity of the ECO surface by incorporating a reflectivity parameter. Under the adiabatic approximation, we can evolve the orbital parameters and compute the EMRI waveforms. The effect of tidal heating for the spinning and non-spinning objects can be used to constrain the reflectivity of the surface at the level of 𝒪(10-6) by computing the mismatch and fisher information matrix.
期刊介绍:
Journal of Cosmology and Astroparticle Physics (JCAP) encompasses theoretical, observational and experimental areas as well as computation and simulation. The journal covers the latest developments in the theory of all fundamental interactions and their cosmological implications (e.g. M-theory and cosmology, brane cosmology). JCAP''s coverage also includes topics such as formation, dynamics and clustering of galaxies, pre-galactic star formation, x-ray astronomy, radio astronomy, gravitational lensing, active galactic nuclei, intergalactic and interstellar matter.