Answers to frequently asked questions about the pulsar timing array Hellings and Downs curve

IF 3.6 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Classical and Quantum Gravity Pub Date : 2024-07-29 DOI:10.1088/1361-6382/ad4c4c
J D Romano and B Allen
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Abstract

We answer frequently asked questions (FAQs) about the Hellings and Downs correlation curve—the ‘smoking-gun’ signature that pulsar timing arrays (PTAs) have detected gravitational waves (GWs). Many of these questions arise from inadvertently applying intuition about the effects of GWs on LIGO-like detectors to the case of pulsar timing, where not all of it applies. This is because Earth-based detectors, like LIGO and Virgo, have arms that are short (km scale) compared to the wavelengths of the GWs that they detect ( –104 km). In contrast, PTAs respond to GWs whose wavelengths (tens of light-years) are much shorter than their arms (a typical PTA pulsar is hundreds to thousands of light-years from Earth). To demonstrate this, we calculate the time delay induced by a passing GW along an Earth-pulsar baseline (a ‘one-arm, one-way’ detector) and compare it in the ‘short-arm’ (LIGO-like) and ‘long-arm’ (PTA) limits. This provides qualitative and quantitative answers to many questions about the Hellings and Downs curve. The resulting FAQ sheet should help in understanding the ‘evidence for GWs’ recently announced by several PTA collaborations.
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有关脉冲星定时阵列海灵斯和唐斯曲线的常见问题答案
我们回答了有关海灵斯和唐斯相关曲线--脉冲星定时阵列(PTAs)探测到引力波(GWs)的 "烟枪 "标志--的常见问题(FAQs)。其中许多问题都是由于人们无意中将有关引力波对类似 LIGO 的探测器的影响的直觉应用到脉冲星定时上而产生的,但并非所有的直觉都适用于脉冲星定时。这是因为像 LIGO 和 Virgo 这样的地基探测器,与它们探测到的 GW 波长(-104 千米)相比,其探测臂很短(千米级)。与此相反,PTA 对波长(数十光年)比其臂长短得多的 GW 作出反应(一颗典型的 PTA 脉冲星距离地球数百到数千光年)。为了证明这一点,我们计算了沿地球-脉冲星基线("单臂、单向 "探测器)经过的 GW 所引起的时间延迟,并在 "短臂"(类 LIGO)和 "长臂"(PTA)极限中进行了比较。这为有关海灵斯和唐斯曲线的许多问题提供了定性和定量的答案。由此产生的常见问题表应有助于理解几个 PTA 合作组织最近宣布的 "全球变暖证据"。
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来源期刊
Classical and Quantum Gravity
Classical and Quantum Gravity 物理-天文与天体物理
CiteScore
7.00
自引率
8.60%
发文量
301
审稿时长
2-4 weeks
期刊介绍: Classical and Quantum Gravity is an established journal for physicists, mathematicians and cosmologists in the fields of gravitation and the theory of spacetime. The journal is now the acknowledged world leader in classical relativity and all areas of quantum gravity.
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