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Exploring strong-field deviations from general relativity via gravitational waves

机译:通过引力波探索普通相对论的强场偏差

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Two new observational windows have been opened to strong gravitational physics: gravitational waves, and very long baseline interferometry. This suggests observational searches for new phenomena in this regime, and in particular for those necessary to make black hole evolution consistent with quantum mechanics. We describe possible features of "compact quantum objects" that replace classical black holes in a consistent quantum theory, and approaches to observational tests for these using gravitational waves. This is an example of a more general problem of finding consistent descriptions of deviations from general relativity, which can be tested via gravitational wave detection. Simple models for compact modifications to classical black holes are described via an effective stress tensor, possibly with an effective equation of state. A general discussion is given of possible observational signatures, and of their dependence on properties of the colliding objects. The possibility that departures from classical behavior are restricted to the near-horizon regime raises the question of whether these will be obscured in gravitational wave signals, due to their mutual interaction in a binary coalescence being deep in the mutual gravitational well. Numerical simulation with such simple models will be useful to clarify the sensitivity of gravitational wave observation to such highly compact departures from classical black holes.
机译:两个新的观察窗口已被打开到强烈的引力物理:引力波,以及非常长的基线干涉测量。这表明在该制度中对新现象的观察搜索,特别是对于制造与量子力学的黑洞演进所必需的那些。我们描述了在一致量子理论中更换经典黑洞的“紧凑型量子物体”的可能特征,以及使用引力波的观察试验方法。这是一种更一般的问题的示例,其能够通过重力波检测找到与一般相对性的偏差的一致描述。通过有效的应力张量描述了对经典黑洞进行紧凑修改的简单模型,可能具有有效的状态方程。一般讨论是可能的观察签名,以及它们对碰撞物体的性质的依赖性。偏离经典行为的可能性仅限于近地平线状态,提出了这些问题在引力波信号中,由于它们在二元聚结中深入在相互引力良好的井中深处。具有如此简单模型的数值模拟将有助于阐明引力波观察的灵敏度,从经典黑洞的这种高度紧凑的偏移。

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