论文标题

部分可观测时空混沌系统的无模型预测

Detecting the stochastic gravitational wave background with the TianQin detector

论文作者

Cheng, Jun, Li, En-Kun, Hu, Yi-Ming, Liang, Zheng-Cheng, Zhang, Jian-dong, Mei, Jianwei

论文摘要

随机重力波背景(SGWB)的检测是太空传播引力波观测站的主要科学目标之一,这将对天体物理学和基本物理学产生重大影响。在这项工作中,我们开发了一个数据分析软件,\ texttt {tqsgwb},该软件可以使用基于天气检测器的贝叶斯分析方法提取各向同性SGWB。我们发现,对于噪声跨频谱,存在虚构的组件,它们在打破公共激光链路中位置噪声的变性中起着重要作用。当考虑假想校正时,位置噪声参数的可靠区域将减少两个数量级。我们证明,在没有马尔可夫链蒙特卡洛采样的银河混乱前景的情况下,可以直接估算各种信号和仪器噪声的参数。只有为期三个月的观察,我们发现天气可以自信地检测能量密度低至$ω_ {\ rm pl} = 1.3 \ times 10^{ - 12} $,$ω_ {\ rm pl} $ { \ times 10^{ - 12} $,分别用于Power-Law,Flat和单峰模型。

The detection of stochastic gravitational wave background (SGWB) is among the leading scientific goals of the space-borne gravitational wave observatory, which would have significant impact on astrophysics and fundamental physics. In this work, we developed a data analysis software, \texttt{TQSGWB}, which can extract isotropic SGWB using the Bayes analysis method based on the TianQin detector. We find that for the noise cross spectrum, there are imaginary components and they play an important role in breaking the degeneracy of the position noise in the common laser link. When the imaginary corrections are considered, the credible regions of the position noise parameters are reduced by two orders of magnitude. We demonstrate that the parameters of various signals and instrumental noise could be estimated directly in the absence of a Galactic confusion foreground through Markov chain Monte Carlo sampling. With only a three-month observation, we find that TianQin could be able to confidently detect SGWBs with energy density as low as $Ω_{\rm PL} = 1.3 \times 10^{-12}$, $Ω_{\rm Flat} = 6.0 \times 10^{-12}$, and $Ω_{\rm SP} = 9.0 \times 10^{-12}$, for power-law, flat, and single-peak models respectively.

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