Journal article
Searching for anisotropy in the gravitational wave background using the Parkes Pulsar Timing Array
Yiqin Chen, Shi-Yi Zhao, Zhi-Zhang Peng, Xingjiang Zhu, ND Ramesh Bhat, Zu-Cheng Chen, Małgorzata Curyło, Valentina Di Marco, George Hobbs, Agastya Kapur, Wenhua Ling, Rami Mandow, Saurav Mishra, Daniel J Reardon, Christopher J Russell, Ryan M Shannon, Jacob Cardinal Tremblay, Jingbo Wang, Lei Zhang, Andrew Zic
Physical Review D | American Physical Society (APS) | Published : 2026
DOI: 10.1103/czxp-zrd6
Abstract
In recent years, several Pulsar Timing Array collaborations have reported evidence for a nanohertz gravitational wave background (GWB). Such a background signal could be produced by supermassive binary black holes, early-Universe processes such as inflation and phase transitions, or a mixture of both. One way to disentangle different contributions to the GWB is to search for anisotropic signatures. In this work, we search for anisotropy in the GWB using the third data release of the Parkes Pulsar Timing Array. Our analysis employs both the radiometer method and the spherical harmonic basis to characterize the distribution of GWB power across the sky. We calculate the angular power in the low..
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Grants
Awarded by National Key Research and Development Program of China
Awarded by National Natural Science Foundation of China
Awarded by Beijing Normal University
Awarded by ARC Centre of Excellence for All-Sky Astrophysics
Awarded by Natural Science Foundation of Hunan Province
Awarded by Foundation for Innovative Research Groups of Hubei Province