English

Pulsar Polarization Array Limits on Ultralight Axion-like Dark Matter

High Energy Astrophysical Phenomena 2026-01-08 v2 Cosmology and Nongalactic Astrophysics Instrumentation and Methods for Astrophysics High Energy Physics - Phenomenology

Abstract

We conduct the first-ever Pulsar Polarization Array (PPA) analysis to detect the ultralight Axion-Like Dark Matter (ALDM) using the polarization data of 22 millisecond pulsars from the third data release of Parkes Pulsar Timing Array. As one of the major dark matter candidates, the ultralight ALDM exhibits a pronounced wave nature on astronomical scales and offers a promising solution to small-scale structure issues within local galaxies. While the linearly polarized pulsar light travels through the ALDM galactic halo, its position angle (PA) can be subject to an oscillation induced by the ALDM Chern-Simons coupling with electromagnetic field. The PPA is thus especially suited for detecting the ultralight ALDM by correlating polarization data across the arrayed pulsars. To accomplish this task, we develop an advanced Bayesian analysis framework that allows us to construct pulsar PA residual time series, model noise contributions properly and search for pulsar cross-correlations. We find that for an ALDM density of ρ0=0.4GeV/cm3\rho_0=0.4\,\textrm{GeV}/\textrm{cm}^3, the Parkes PPA offers the best global limits on the ALDM Chern-Simons coupling, namely 1013.51012.2 GeV1\lesssim 10^{-13.5}-10^{-12.2}~{\rm GeV}^{-1}, for the mass range of 10221021 eV10^{-22} - 10^{-21}~{\rm eV}. The crucial role of pulsar cross-correlation in recognizing the nature of the derived limits is also highlighted.

Keywords

Cite

@article{arxiv.2412.02229,
  title  = {Pulsar Polarization Array Limits on Ultralight Axion-like Dark Matter},
  author = {Xiao Xue and Shi Dai and Hoang Nhan Luu and Tao Liu and Jing Ren and Jing Shu and Yue Zhao and Andrew Zic and N. D. Ramesh Bhat and Zu-Cheng Chen and Yi Feng and George Hobbs and Agastya Kapur and Richard N. Manchester and Rami Mandow and Saurav Mishra and Daniel J. Reardon and Christopher J. Russell and Ryan M. Shannon and Shuangqiang Wang and Lei Zhang and Songbo Zhang and Xingjiang Zhu},
  journal= {arXiv preprint arXiv:2412.02229},
  year   = {2026}
}

Comments

6+20 pages, 14 figures, 2 tables; matches version published in Physical Review Letters

R2 v1 2026-06-28T20:20:55.575Z