Axion magnetohydrodynamics and reconnection-driven axion bursts

Fuente: arXiv
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Main Author: Terças, H.
Format: Preprint
Published: 2026
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author Terças, H.
author_facet Terças, H.
contents We formulate axion magnetohydrodynamics beyond the ideal limit, retaining axion inertia and the essential physics of non-ideal plasmas from first principles. In this framework, regions where magnetic flux freezing breaks down acquire a new physical role: whenever $\mathbf{E} \cdot\ \mathbf{B} \neq 0$, magnetic dissipation acts as a localized source of axion radiation. We show that magnetic reconnection naturally excites mixed Alfvén-axion modes, enabling coherent energy exchange between magnetic fields and axions in magnetically dominated environments. In neutron stars and magnetars, this mechanism leads generically to transient axion bursts powered by reconnection--driven Alfvénic dissipation. We connect this production process to observational prospects and derive a characteristic sensitivity to the axion--photon coupling, complementary to searches based on static magnetic fields.
format Preprint
id arxiv_https___arxiv_org_abs_2605_15162
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Axion magnetohydrodynamics and reconnection-driven axion bursts
Terças, H.
Plasma Physics
High Energy Astrophysical Phenomena
We formulate axion magnetohydrodynamics beyond the ideal limit, retaining axion inertia and the essential physics of non-ideal plasmas from first principles. In this framework, regions where magnetic flux freezing breaks down acquire a new physical role: whenever $\mathbf{E} \cdot\ \mathbf{B} \neq 0$, magnetic dissipation acts as a localized source of axion radiation. We show that magnetic reconnection naturally excites mixed Alfvén-axion modes, enabling coherent energy exchange between magnetic fields and axions in magnetically dominated environments. In neutron stars and magnetars, this mechanism leads generically to transient axion bursts powered by reconnection--driven Alfvénic dissipation. We connect this production process to observational prospects and derive a characteristic sensitivity to the axion--photon coupling, complementary to searches based on static magnetic fields.
title Axion magnetohydrodynamics and reconnection-driven axion bursts
topic Plasma Physics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2605.15162