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September 12, 2025Journal of High Energy Physics0 citationsOpen Access

Domain walls in Nelson-Barr axion model

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KMKai MuraiKNKazunori Nakayama

Key Points

  • Domain wall formation occurs from the model's tree-level potential, impacting CP conservation.
  • The model naturally collapses axion domain walls, supporting solutions to the strong CP problem.
  • Cosmological implications include potential dark matter production linked to these domain wall collapses.
  • Gravitational waves may also be emitted as a result of the dynamics of domain walls in this framework.

Abstract

A bstract We explore a concrete realization of a Nelson-Barr model addressing the strong CP problem with suppressed unfavorable corrections. This model has a scalar field that spontaneously breaks discrete symmetry, and its phase component can naturally be relatively light, which we call the Nelson-Barr axion. It has both a tree-level potential and the QCD instanton-induced potential like the QCD axion, each minimizing at the CP-conserving point. While one potential leads to domain wall formation, the other works as a potential bias. This model provides a natural setup for the collapse of the axion domain walls by a potential bias without spoiling a solution to the strong CP problem. We discuss the cosmological implications of domain wall collapses, including dark matter production and gravitational wave emission.

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Cite This Study

Murai et al. (2025) studied this question.

synapsesocial.com/papers/68d44c5531b076d99fa561a2https://doi.org/10.1007/jhep09(2025)099
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