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Electromagnetic Signals Following Stellar-mass Black Hole Mergers

机译:恒星质量黑洞合并后的电磁信号

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It is often assumed that gravitational-wave. (GW) events resulting from the merger of stellar-mass black holes are unlikely to produce electromagnetic. (EM) counterparts. We point out that the progenitor binary has probably shed a mass greater than or similar to 10M(circle dot) during its prior evolution. If even a tiny fraction of this gas is retained in a circumbinary disk, the sudden mass loss and recoil of the merged black hole shocks and heats it within hours of the GW event. Whether the resulting EM signal is detectable is uncertain. The optical depth through the disk is likely to be high enough that the prompt emission consists only of photons from its optically thin skin, while the majority may take years to emerge. However, if some mechanism can release more photons in a time comparable to the few-hour energy production time, the peak luminosity of the EM signal could be detectable. For a disk retaining only similar to 10(-3) of the mass shed in the earlier binary evolution, medium-energy X-rays to infrared emission would be observable hours after the GW event for source distances of. similar to 500 Mpc. Events like this may already have been observed, but ascribed to unidentified active galactic nuclei. Improved sky. localization should eventually allow identification based on spatial coincidence. A detection would provide unique constraints on formation scenarios and potentially offer tests of strong-field general relativity. Accordingly, we argue that the high scientific payoff of an EM detection fully justifies search campaigns.
机译:通常假设引力波。 (GW)由恒星质量黑洞合并产生的事件不太可能产生电磁。 (EM)对应物。我们指出,在其先前的进化期间,祖先二进制文件可能脱落大于或类似于10M(圆点)的质量。如果即使这种气体的微小部分保留在圆盘中,则合并的黑洞的突然质量损失和反辐射的损失冲击并将其加热在GW事件的小时内。所得的EM信号是可检测的是否不确定。通过盘的光学深度可能很高,即迅速排放仅由光子从​​其光学薄皮肤组成,而大多数可能需要数年才能出现。然而,如果某些机构可以在与少小时能量生产时间相当的时间中释放更多的光子,则可以检测到EM信号的峰值亮度。对于在早期的二进制演变中仅相似的磁盘仅类似于10(-3)的质量棚,在GW事件的源距离之后,将在GW事件之后是可观察到的。类似于500 mpc。可能已经观察到这样的事件,但归因于未识别的活性银核。改进了天空。本地化最终应允许基于空间巧合的识别。检测将为地层情景提供独特的约束,并且可能提供强大的通用相对性的测试。因此,我们认为EM检测的高科学薪水充分证明了搜索活动。

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