Measuring the electric dipole moment of the neutron using neutron star spin-down

arXiv:2608.06593 · astro-ph.HE · Submitted 2026-08-06 · Read on arXiv

Abriana Lyda

astro-ph.HE

Submitted: 2026-08-06

Updated: 2026-08-10

Comments: 131 pages, 17 figures

License: http://creativecommons.org/licenses/by-nc-sa/4.0/

The gist: The neutron electric dipole moment (nEDM) is a sensitive probe of CP violation beyond the Standard Model.

Terminology

Abstract

The neutron electric dipole moment (nEDM) is a sensitive probe of CP violation beyond the Standard Model. We develop a source-specific framework for constraining CP-odd neutron structure using the nearby millisecond pulsar PSR J0437-4715. Mass and radius measurements are used to construct a stellar-structure model and estimate the polarized inner-crust neutron reservoir. Wideband radio polarimetry provides a propagation-informed surface-field posterior that is not obtained from the conventional P P magnetic-field estimate, while published NICER hot-region constraints are used to test low-order surface-field geometries and isolate the dipolar component entering the electromagnetic torque. These inputs are propagated through a present-day spin-down budget including electromagnetic and gravitational-wave losses. The remaining positive residual is first interpreted as an unscreened electric-dipole-radiation benchmark. Crustal and magnetospheric screening then motivate an effective CP-odd magnetic-quadrupole channel. Conditional on the adopted screening, coherence, and effective-mode-frequency prescriptions, the positive-residual branch gives a 90th-percentile bound M n 0<7.47 times10-38 e cm squared. With the adopted QCD conversion coefficients, this corresponds to <2.99 times10-9 and an equivalent d n<4.42 times10-25 e cm. Although weaker than laboratory nEDM limits, the result demonstrates how source-specific neutron-star structure, radio propagation, magnetic geometry, and spin-down energetics can be combined to test nonstandard CP-odd radiation channels.

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