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Properties of the stochastic astrophysical gravitational wave background: Astrophysical sources dependencies

机译:随机天体物理引力波背景的性质:天体物理资源依赖性

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This article explores the properties (amplitude and shape) of the angular power spectrum of the anisotropies of the astrophysical gravitational wave background (AGWB) focusing on the signatures of the astrophysical models describing subgalactic physics. It demonstrates that while some parameters have negligible impact, others, and in particular the stellar evolution models, the metallicity and the merger time delay distribution can result in relative differences of order 40% in the angular power spectrum of anisotropies in both the LIGO/Virgo and LISA frequency bands. It is also shown that the monopole and the anisotropic components of the AGWB are complementary and sensitive to different astrophysical parameters. It follows that AGWB anisotropies are a new observable with the potential to provide new astrophysical information that cannot be accessed otherwise.
机译:本文探讨了全体物理引力波背景(AGWB)各向异性的角度功率谱的性质(幅度和形状),其专注于描述子术物理学的天体物理模型的签名。 它表明,虽然一些参数具有可忽略的影响,但是特别是恒星演化模型,但金属性和合并时间延迟分布可以导致Ligo /处女座的各向异性的角度功率谱中的相对差异40% 和丽莎频段。 还表明,AGWB的单极和各向异性成分对不同的天体物理参数互补和敏感。 因此,AGWB各向异性是一种新的可观察,有可能提供无法访问的新的天体物理信息。

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