Constraining small-scale primordial magnetic fields from the abundance of primordial black holes
Ashu Kushwaha, Teruaki Suyama

TL;DR
This paper refines constraints on small-scale primordial magnetic fields by considering their effect on the threshold for primordial black hole formation, leading to a more accurate upper limit on magnetic field strength.
Contribution
It introduces a revised method that accounts for increased formation thresholds, providing more precise constraints on early-universe magnetic fields compared to previous approaches.
Findings
Upper limit on magnetic fields: 0.13-0.15 μG at 10^{17} Mpc^{-1}
Magnetic fields can raise the density contrast threshold for PBH formation
In some cases, magnetic fields suppress PBH production despite their strength.
Abstract
The presence of magnetic fields in the early universe affects the cosmological processes, leading to the distinct signature, which allows constraining their properties and the genesis mechanisms. In this study, we revisit the method to constrain the amplitude of the magnetic fields on small scales in the radiation-dominated era from the abundance of primordial black holes. Constraints in the previous work were based on the fact that the density perturbations sourced by stronger magnetic fields become large enough to gravitationally collapse to form PBHs. However, we demonstrate that this picture is incomplete because magnetic fields also increase the threshold value of the density contrast required for PBH formation. The increase in threshold density contrast is more pronounced on smaller scales, and in extreme cases, it might even prevent PBH production despite the presence of…
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Taxonomy
TopicsCosmology and Gravitation Theories · Geophysics and Gravity Measurements · Solar and Space Plasma Dynamics
