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arXiv:2512.11023·v2·High Energy Physics — Phenomenology

Constraints on light QCD and CP-violating axions from the death line of rotation-powered pulsars

Samuel J. Witte🇬🇧 · Andrea Caputo🇨🇭 · Stefan Stelzl🇨🇭 · Alexander Chernoglazov🇺🇸 · Alexander A. Philippov🇺🇸 · Surjeet Rajendran🇺🇸

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Abstract

Dense nuclear matter can modify the effective potential of axions, displacing them from their vacuum minimum, and sourcing large external field gradients (``axion hair"). In the case of neutron stars, axion hair directly modifies the electrodynamic processes operating on the open field-line region, strongly enhancing or suppressing the acceleration experienced by ambient charges. As a result, the point in the neutron star lifetime at which pair-cascades cease -- known as pulsar ``death" -- can be dramatically altered, allowing for much older pulsars to emit observable radio emission. We study the pair discharge process in the presence of axion hair using semi-analytic techniques and particle-in-cell simulations, and use these results alongside pulsar demographics to derive new constraints on light QCD axions with non-negligible axion-photon coupling and CP-violating axion-nucleon interactions. We also illustrate how nearly orthogonal rotators, where emission is observed from both poles (such as in the case of PSR J1906+0746), provides a complementary probe of axion hair.

Comments: v2: Published version. 45 pages, 43 figures. Original manuscript has been divided into a results paper (this v2), and a methods paper (published as an independent article in PRD). v1:60 pages, 59 figures

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