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Limits of Astrophysics with Gravitational-Wave Backgrounds

机译:Astrophysics与引力波背景的限制

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The recent Advanced LIGO detection of gravitational waves from the binary black hole GW150914 suggests there exists a large population of merging binary black holes in the Universe. Although most are too distant to be individually resolved by advanced detectors, the superposition of gravitational waves from many unresolvable binaries is expected to create an astrophysical stochastic background. Recent results from the LIGO and Virgo Collaborations show that this astrophysical background is within reach of Advanced LIGO. In principle, the binary black hole background encodes interesting astrophysical properties, such as the mass distribution and redshift distribution of distant binaries. However, we show that this information will be difficult to extract with the current configuration of advanced detectors (and using current data analysis tools). Additionally, the binary black hole background also constitutes a foreground that limits the ability of advanced detectors to observe other interesting stochastic background signals, for example, from cosmic strings or phase transitions in the early Universe. We quantify this effect.
机译:最近从二进制黑洞GW150914开始的引力波的先进的解戈检测表明宇宙中存在大量合并二元黑洞。虽然大多数人太遥远的是通过先进的探测器单独解决,但是预计来自许多难以解决的二进制文件的引力波的叠加将产生一个天体物理随机背景。 Ligo和Virgo合作的最近结果表明,这种天体物理背景是高级利戈的触及范围。原则上,二元黑洞背景编码有趣的天体物理特性,例如遥远二进制二进制的批量分布和红移分布。但是,我们表明,使用高级探测器的当前配置难以提取此信息(并使用当前数据分析工具)。另外,二进制黑洞背景也构成了前景,这限制了先进的探测器观察其他有趣的随机背景信号的能力,例如,从早期宇宙中的宇宙串或相位过渡。我们量化了这种效果。

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