论文标题
随机重力波背景:当前的检测工作和未来前景
Stochastic Gravitational-Wave Backgrounds: Current Detection Efforts and Future Prospects
论文作者
论文摘要
单独解析的引力波(GW)事件的集合构成了所有GW信号的一小部分,这些信号到达我们的探测器,而大多数人则低于混淆限制,未被发现。就像拥挤的房间中的声音一样,未解决的信号的集合产生到通过随机变量很好地描述的背景,因此被称为随机GW背景(SGWB)。在这篇综述中,我们提供了随机GW信号的概述,并根据感兴趣的特征(例如生成过程和观察性能)对它们进行表征。然后,我们回顾了随机背景的当前检测策略,并为实际数据中的随机GW搜索提供了现成的手册。在此过程中,我们通过基于地面或空间的激光干涉仪和PULSAR时正时阵列(PTA)进行了基于地面或空间的激光干涉仪的干涉测量值。这些检测方法已被大型GW协作和较小的研究小组应用于真实数据,并且在此报告了最新和启发性的结果。我们通过对文献中提出的第三代探测器,基于空间的干涉仪以及潜在的非接触测定方法的观察,并以对未来观察的前景结束了这篇综述。
The collection of individually resolvable gravitational wave (GW) events makes up a tiny fraction of all GW signals which reach our detectors, while most lie below the confusion limit and go undetected. Like voices in a crowded room, the collection of unresolved signals gives rise to a background which is well-described via stochastic variables, and hence referred to as the stochastic GW background (SGWB). In this review, we provide an overview of stochastic GW signals, and characterise them based on features of interest such as generation processes and observational properties. We then review the current detection strategies for stochastic backgrounds, offering a ready-to-use manual for stochastic GW searches in real data. In the process, we distinguish between interferometric measurements of GWs, either by ground-based or space-based laser interferometers, and timing-residuals analyses with pulsar timing arrays (PTAs). These detection methods have been applied to real data both by the large GW collaborations and smaller research groups, and the most recent and instructive results are reported here. We close this review with an outlook on future observations with third generation detectors, space-based interferometers, and potential non-interferometric detection methods proposed in the literature.