Inefficiency of chiral dynamos in protoneutron stars and the early universe

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Autori principali: Skoutnev, Valentin A., Beloborodov, Andrei M.
Natura: Preprint
Pubblicazione: 2026
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author Skoutnev, Valentin A.
Beloborodov, Andrei M.
author_facet Skoutnev, Valentin A.
Beloborodov, Andrei M.
contents The chiral plasma instability (CPI) has been invoked as a possible mechanism for generating primordial magnetic fields in the universe and ultrastrong fields in neutron stars. We investigate chiral dynamos where the chirality imbalance is pumped by a source on a timescale $t_0$ and show that the CPI rate $γ$ is limited to $γ_0/(1+{\cal Q}^2)$, where ${\cal Q}= (γ_0 t_0)^{1/3}$ and $γ_0$ corresponds to models with instantaneously created chirality imbalance $(t_0=0)$. We then find that chiral flipping with rate $Γ_{\mathrm f}$ hinders the chiral dynamo if $Γ_{\mathrm f} >γ_0/(1+{\cal Q}^2)$ and completely suppresses it if $Γ_{\mathrm f} >γ_0/(1+{\cal Q}^{3/2})$. Realistic $t_0$ typically give ${\cal Q}\gg 1$, which makes the dynamo greatly vulnerable to suppression by chiral flipping. The suppression is strong in protoneutron stars and may be (barely) avoided near the electroweak transition in the early universe.
format Preprint
id arxiv_https___arxiv_org_abs_2603_07715
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Inefficiency of chiral dynamos in protoneutron stars and the early universe
Skoutnev, Valentin A.
Beloborodov, Andrei M.
High Energy Astrophysical Phenomena
Plasma Physics
The chiral plasma instability (CPI) has been invoked as a possible mechanism for generating primordial magnetic fields in the universe and ultrastrong fields in neutron stars. We investigate chiral dynamos where the chirality imbalance is pumped by a source on a timescale $t_0$ and show that the CPI rate $γ$ is limited to $γ_0/(1+{\cal Q}^2)$, where ${\cal Q}= (γ_0 t_0)^{1/3}$ and $γ_0$ corresponds to models with instantaneously created chirality imbalance $(t_0=0)$. We then find that chiral flipping with rate $Γ_{\mathrm f}$ hinders the chiral dynamo if $Γ_{\mathrm f} >γ_0/(1+{\cal Q}^2)$ and completely suppresses it if $Γ_{\mathrm f} >γ_0/(1+{\cal Q}^{3/2})$. Realistic $t_0$ typically give ${\cal Q}\gg 1$, which makes the dynamo greatly vulnerable to suppression by chiral flipping. The suppression is strong in protoneutron stars and may be (barely) avoided near the electroweak transition in the early universe.
title Inefficiency of chiral dynamos in protoneutron stars and the early universe
topic High Energy Astrophysical Phenomena
Plasma Physics
url https://arxiv.org/abs/2603.07715