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Implications of the binary black hole merger gw 150914

semanticscholar(2019)

Cited 1|Views17
Abstract
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provides the first observational evidence for the existence of binary black hole (BH) systems that inspiral and merge within the age of the universe. Such BH mergers have been predicted in two main types of formation models, involving isolated binaries in galactic fields or dynamical interactions in young and old dense stellar environments. The measured masses robustly demonstrate that relatively “heavy” BHs ( 25  M) can form in nature. This discovery implies relatively weak massive-star winds and thus the formation of GW150914 in an environment with a metallicity lower than about 1/2 of the solar value. The rate of binary-BH (BBH) mergers inferred from the observation of GW150914 is consistent with the higher end of rate predictions ( 1  Gpc yr) from both types of formation models. The low measured redshift (z 0.1  ) of GW150914 and the low inferred metallicity of the stellar progenitor imply either BBH formation in a low-mass galaxy in the local universe and a prompt merger, or formation at high redshift with a time delay between formation and merger of several Gyr. This discovery motivates further studies of binary-BH formation astrophysics. It also has implications for future detections and studies by Advanced LIGO and Advanced Virgo, and GW detectors in space.
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要点】:论文揭示了引力波源GW150914的观测证据,证实了双黑洞系统的存在,并提出双黑洞合并的环境特征及形成模型。

方法】:通过Advanced LIGO探测器观测到的引力波数据,分析双黑洞合并事件GW150914的质量和金属丰度。

实验】:使用Advanced LIGO探测器观测到GW150914事件,数据集名称未提及,实验结果表明双黑洞合并率与预测的上限相符,并推断出双黑洞形成的低金属丰度环境。