Probing dipole and quadrupole anisotropy in Gamma-ray bursts from Swift dataset

arXiv:2606.21182 · astro-ph.HE, astro-ph.CO · Submitted 2026-06-19 · Read on arXiv

Vedant Mokal, Shantanu Desai

astro-ph.HE, astro-ph.CO

Submitted: 2026-06-19

Comments: 18 pages, 17 figures. Accepted for publication in Universe

DOI: 10.3390/universe12060185

Code: https://github.com/Lithium-spirit/Swift-isotropy

License: http://creativecommons.org/licenses/by/4.0/

The gist: Testing the validity of the cosmological principle's assumption of large-scale isotropy remains crucial for modern cosmology.

Terminology

Abstract

Testing the validity of the cosmological principle's assumption of large-scale isotropy remains crucial for modern cosmology. We investigate the angular distributions of gamma-ray bursts using the GRB catalog from Neil Gehrels Swift Observatory (Swift) for an independent probe of isotropy. Using the HEALPix spherical harmonic decomposition, we estimate the dipole and quadrupole amplitudes and compare them against the null hypothesis obtained from 500 isotropic Monte Carlo realizations. Our results show 2.9 sigma dipole and 7.2 sigma quadrupole amplitude when applied to the raw data. To account for observational biases, we then create an exposure map using the pointing history, roll angle, and the partial coding fraction of the Swift Telescope. Reevaluating the null hypothesis using this map reduces the significance of these anisotropies to less than 1 sigma. Therefore, our findings confirm statistical isotropy of the GRB sky using the Swift data, consistent with previous studies. We have also made the Swift exposure map publicly available.

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