脉冲星
物理
天体物理学
天文
引力波
毫秒脉冲星
双星脉冲星
探测器
望远镜
X射线脉冲星
射电望远镜
平方(代数)
天空
引力波背景
集合(抽象数据类型)
宇宙癌症数据库
过程(计算)
引力波观测站
宇宙弦
中子星
光圈(计算机存储器)
射电天文学
数据集
蟹状脉冲星
粒子探测器
区间(图论)
作者
Maiorano, Michele,De Paolis, Francesco,Nucita, Achille A.
标识
DOI:10.48550/arxiv.2112.08064
摘要
Pulsar timing uses the highly stable pulsar spin period to investigate many astrophysical topics. In particular, pulsar timing arrays make use of a set of extremely well-timed pulsars and their time correlations as a challenging detector of gravitational waves. It turns out that pulsar timing arrays are particularly sensitive to ultra-low-frequency gravitational waves, which makes them complementary to other gravitational-wave detectors. Here, we summarize the basics, focusing especially on supermassive black-hole binaries and cosmic strings, which have the potential to form a stochastic gravitational-wave background in the pulsar timing array detection band, and the scientific goals on this challenging topic. We also briefly outline the recent interesting results of the main pulsar timing array collaborations, which have found strong evidence of a common-spectrum process compatible with a stochastic gravitational-wave background and mention some new perspectives that are particularly interesting in view of the forthcoming radio observatories such as the Five hundred-meter Aperture Spherical Telescope, the MeerKAT telescope, and the Square Kilometer Array.
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