Intergalactic magnetic field lower limits up to the redshift $z\approx3$

Fuente: arXiv
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Main Author: Vovk, Ievgen
Format: Preprint
Published: 2025
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author Vovk, Ievgen
author_facet Vovk, Ievgen
contents Large-scale intergalactic magnetic fields may contain a mixture of galactic and cosmogenic contributions, that can be probed via observations of $γ$-ray "echo" - a delayed emission from electromagnetic cascades initiated by the highest energy photons from the sources at cosmological distances. While these fields contributions may be disentangled based on the difference in their redshift evolution, thus far indications of non-negligible magnetic field have been found only at low redshifts. This work aims at extending the intergalactic magnetic field constraints to redshifts $z\gtrsim 1$ using 17-year long all-sky observations of high-redshift active galactic nuclei with Fermi/LAT $γ$-ray telescope. Combing the Fermi/LAT measurements in the 0.1 GeV - 1 TeV energy range with the Monte Carlo simulations of the $γ$-ray "echo", it is shown that the zero field strength hypothesis at $z = [0.5; 3]$ is disfavoured at the $\approx 8.6σ$ significance level, yielding the lower limit of $B \gtrsim 1\times10^{-18}$ cG for the magnetic field correlation length above 1 Mpc. It is further shown that the same data put a lower limit on the volume-filling fraction of this field of $f\gtrsim 90\%$ in the redshift range considered. It is also demonstrated that the derived limits are not substantially affected by either source flux variability or the assumed $γ$-ray emission attenuation model. Implications of these limits for intergalactic magnetic field origin are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2512_11397
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Intergalactic magnetic field lower limits up to the redshift $z\approx3$
Vovk, Ievgen
High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
Large-scale intergalactic magnetic fields may contain a mixture of galactic and cosmogenic contributions, that can be probed via observations of $γ$-ray "echo" - a delayed emission from electromagnetic cascades initiated by the highest energy photons from the sources at cosmological distances. While these fields contributions may be disentangled based on the difference in their redshift evolution, thus far indications of non-negligible magnetic field have been found only at low redshifts. This work aims at extending the intergalactic magnetic field constraints to redshifts $z\gtrsim 1$ using 17-year long all-sky observations of high-redshift active galactic nuclei with Fermi/LAT $γ$-ray telescope. Combing the Fermi/LAT measurements in the 0.1 GeV - 1 TeV energy range with the Monte Carlo simulations of the $γ$-ray "echo", it is shown that the zero field strength hypothesis at $z = [0.5; 3]$ is disfavoured at the $\approx 8.6σ$ significance level, yielding the lower limit of $B \gtrsim 1\times10^{-18}$ cG for the magnetic field correlation length above 1 Mpc. It is further shown that the same data put a lower limit on the volume-filling fraction of this field of $f\gtrsim 90\%$ in the redshift range considered. It is also demonstrated that the derived limits are not substantially affected by either source flux variability or the assumed $γ$-ray emission attenuation model. Implications of these limits for intergalactic magnetic field origin are discussed.
title Intergalactic magnetic field lower limits up to the redshift $z\approx3$
topic High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2512.11397