论文标题

下一代地面观测值紧凑型二进制前景减法

Compact Binary Foreground Subtraction in Next-Generation Ground-Based Observatories

论文作者

Zhou, Bei, Reali, Luca, Berti, Emanuele, Çalışkan, Mesut, Creque-Sarbinowski, Cyril, Kamionkowski, Marc, Sathyaprakash, B. S.

论文摘要

当前探测器的随机重力波背景(SGWB)以二元黑洞(BBH)和二进制中子星(BNS)结合为主。当前重力波(GW)检测器网络的敏感性仅允许一小部分BBHS和BNSS解决和减去BNSS,但先前的工作表明,下一代(XG)观测值的敏感性应显着改善。我们通过考虑波形建模的不确定性,更新的天体物理模型以及(至关重要的)必须估算的完整参数以删除已解决的来源来重新审视这些结论。与以前的研究相比,我们发现BBH和BNSS的残留背景即使在XG探测器网络中也很大。因此,将需要新的数据分析方法观察宇宙超新星的SGWB或早期现象的贡献,例如宇宙字符串,僵硬的通货膨胀后液体或斧头膨胀。

The stochastic gravitational-wave backgrounds (SGWBs) for current detectors are dominated by binary black-hole (BBH) and binary neutron-star (BNS) coalescences. The sensitivity of current networks of gravitational-wave (GW) detectors allows only a small fraction of BBHs and BNSs to be resolved and subtracted, but previous work indicated that the situation should significantly improve with next-generation (XG) observatories. We revisit these conclusions by taking into account waveform-modeling uncertainties, updated astrophysical models, and (crucially) the full set of parameters that must be estimated to remove the resolved sources. Compared to previous studies, we find that the residual background from BBHs and BNSs is large even with XG detector networks. New data analysis methods will thus be required to observe the SGWB from cosmic supernovae or contributions from early-Universe phenomena like cosmic strings, stiff post-inflation fluids, or axion inflation.

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