English

Charting the Nanohertz Gravitational Wave Sky with Pulsar Timing Arrays

Cosmology and Nongalactic Astrophysics 2025-04-16 v2 High Energy Astrophysical Phenomena General Relativity and Quantum Cosmology

Abstract

In the summer of 2023, the pulsar timing arrays (PTAs) announced a compelling evidence for the existence of a nanohertz stochastic gravitational wave background (SGWB). Despite this breakthrough, however, several critical questions remain unanswered: What is the source of the signal? How can cosmic variance be accounted for? To what extent can we constrain nanohertz gravity? When will individual supermassive black hole binaries become observable? And how can we achieve a stronger detection? These open questions have spurred significant interests in PTA science, making this an opportune moment to revisit the astronomical and theoretical foundations of the field, as well as the data analysis techniques employed. In this review, we focus on the theoretical aspects of the SGWB as detected by PTAs. We provide a comprehensive derivation of the expected signal and its correlation, presented in a pedagogical manner, while also addressing current constraints. Looking ahead, we explore future milestones in the field, with detailed discussions on emerging theoretical considerations such as cosmic variance, the cumulants of the one- and two-point functions, subluminal gravitational waves, and the anisotropy and polarization of the SGWB.

Keywords

Cite

@article{arxiv.2409.07955,
  title  = {Charting the Nanohertz Gravitational Wave Sky with Pulsar Timing Arrays},
  author = {Reginald Christian Bernardo and Kin-Wang Ng},
  journal= {arXiv preprint arXiv:2409.07955},
  year   = {2025}
}

Comments

31 pages + refs, 7 figures, invited chapter for `One Hundred and Ten Years of General Relativity -- From Genesis and Empirical Foundations to Gravitational Waves, Cosmology and Quantum Gravity', v2: corrected typos, updated references