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Gravitational-wave localization alone can probe origin of stellar-mass black hole mergers

机译:仅靠引力波定位就可以探测恒星质量黑洞合并的起源

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摘要

The recent discovery of gravitational waves from stellar-mass binary black hole mergers by the Laser Interferometer Gravitational-wave Observatory opened the door to alternative probes of stellar and galactic evolution, cosmology and fundamental physics. Probing the origin of binary black hole mergers will be difficult due to the expected lack of electromagnetic emission and limited localization accuracy. Associations with rare host galaxy types—such as active galactic nuclei—can nevertheless be identified statistically through spatial correlation. Here we establish the feasibility of statistically proving the connection between binary black hole mergers and active galactic nuclei as hosts, even if only a sub-population of mergers originate from active galactic nuclei. Our results are the demonstration that the limited localization of gravitational waves, previously written off as not useful to distinguish progenitor channels, can in fact contribute key information, broadening the range of astrophysical questions probed by binary black hole observations.
机译:激光干涉仪引力波天文台最近发现的恒星质量双星黑洞合并引力波为恒星和星系演化,宇宙学和基础物理学的其他探测打开了大门。由于预期缺乏电磁辐射和有限的定位精度,很难探测二元黑洞合并的起源。尽管如此,仍可以通过空间相关性从统计学上确定与罕见的宿主星系类型(例如活跃的银河核)的关联。在这里,我们建立了统计证明二元黑洞合并与作为活动主体的活跃银河核之间联系的可行性,即使合并的子群体仅来自活跃银河核。我们的结果表明,以前被注销为对区分祖细胞通道无用的重力波的局限性实际上可以提供关键信息,从而扩大了由二元黑洞观测所探测的天体​​物理问题的范围。

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