Pith. sign in

Gravitational wave production: A strong constraint on primordial magnetic fields

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

We compute the gravity waves induced by anisotropic stresses of stochastic primordial magnetic fields. The nucleosynthesis bound on gravity waves is then used to derive a limit on the magnetic field amplitude as function of the spectral index. The obtained limits are extraordinarily strong: If the primordial magnetic field is produced by a causal process, leading to a spectral index $n\ge 2$ on super horizon scales, galactic magnetic fields produced at the electroweak phase transition or earlier have to be weaker than $B_\la \le 10^{-27}$Gauss! If they are induced during an inflationary phase (reheating temperature $T\sim 10^{15}$GeV) with a spectral index $n\sim 0$, the magnetic field has to be weaker than $B_\la \le 10^{-39}$Gauss! Only very red magnetic field spectra, $n\sim -3$ are not strongly constrained. We also find that a considerable amount of the magnetic field energy is converted into gravity waves. The gravity wave limit derived in this work rules out most of the proposed processes for primordial seeds for the large scale coherent magnetic fields observed in galaxies and clusters.

fields

astro-ph.CO 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

Chiral gravitational waves from multi-phase magnetogenesis

astro-ph.CO · 2026-02-18 · unverdicted · novelty 6.0

Multi-phase inflation with chiral vector interactions generates amplified primordial magnetic fields that induce a detectable circularly polarized gravitational-wave background.

citing papers explorer

Showing 1 of 1 citing paper.

  • Chiral gravitational waves from multi-phase magnetogenesis astro-ph.CO · 2026-02-18 · unverdicted · none · ref 53 · internal anchor

    Multi-phase inflation with chiral vector interactions generates amplified primordial magnetic fields that induce a detectable circularly polarized gravitational-wave background.