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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Probing primordial stochastic gravitational wave background with multi-band astrophysical foreground cleaning
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Probing primordial stochastic gravitational wave background with multi-band astrophysical foreground cleaning

机译:探测原始随机重力波背景与多频段天体物理前景清洁

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The primordial stochastic gravitational wave background (SGWB) carries first-hand messages of early-universe physics, possibly including effects from inflation, preheating, cosmic strings, electroweak symmetry breaking, and etc. However, the astrophysical foreground from compact binaries may mask the SGWB, introducing difficulties in detecting the signal and measuring it accurately. In this paper, we propose a foreground cleaning method taking advantage of gravitational wave observations in other frequency bands. We apply this method to probing the SGWB with space-borne gravitational wave detectors, such as the laser interferometer space antenna (LISA). We find that the spectral density of the LISA-band astrophysical foreground from compact binaries (black holes and neutron stars) can be predicted with percent-level accuracy assuming 10-years' observations of third-generation GW detectors, e.g., cosmic explorer. While this multi-band method does not apply to binary white dwarfs (BWDs) which usually merger before entering the frequency band of ground-based detectors, we limit our foreground cleaning to frequency higher than similar to 5 mHz, where all galactic BWDs can be individually resolved by LISA and the shape of the spectral density of the foreground from extragalactic BWDs can be reconstructed and/or modeled with certain uncertainties. After the foreground cleaning, LISA's sensitivity to the primordial SGWB will be substantially improved for either two LISA constellations where SGWB can be measured by cross correlating their outputs or only one constellation with three spacecrafts where SGWB can be measured by contrasting the responses of a signal channel and a null channel.
机译:原始随机引力波背景(SGWB)携带早期宇宙物理的第一手信息,可能包括从充气,预热,宇宙串,电牛排对称性的效果等,但是,紧凑型二进制文件的天体物理前景可以掩盖SGWB ,在检测信号和准确测量时引入困难。在本文中,我们提出了一种利用其他频带中的引力波观察的前景清洁方法。我们将该方法应用于使用空间传授波检测器探测SGWB,例如激光干涉仪空间天线(LISA)。我们发现,来自紧凑型二进制文件(黑洞和中子恒星)的Lisa频段天体物理前景的光谱密度可以预测百分比准确性,假设第三代GW探测器的观察,例如宇宙探险家。虽然这种多频段方法不适用于通常合并之前的二进制白矮星(BWDS),但我们将我们的前景清洁限制为高于类似于5 MHz的频率,其中所有银河BWD都可以通过LISA单独解决,并且可以重建和/或以某些不确定性来重建和/或建模前景的前景的光谱密度的形状。在前台清洁之后,对于两个LISA星座,LISA对原始SGWB的敏感性对于通过交叉将其输出或仅具有三个航天器来测量SGWB的两个LISA星座,可以通过将SGWB的响应对比信号通道的响应来测量SGWB和一个空频道。

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