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February 21, 2026Journal of High Energy Physics3 citationsOpen Access

Cosmic strings in multi-step symmetry breaking

ACAkifumi ChitoseMIMasahiro IbeSSSatoshi Shirai

Key Points

  • The research aims to understand cosmic strings formed through a hierarchical gauge symmetry breaking sequence, focusing on heavy, metastable strings.
  • Analyzed gauge symmetry breaking patterns: SU(2) × U(1) → U(1) × U(1) → U(1) ′ → Nothing.
  • Investigated the internal structure of heavy cosmic strings and their decay processes.
  • Examined the magnetic flux linked to monopole-like configurations at string decay endpoints.
  • Identified two classes of cosmic strings: light stable strings and heavy metastable strings.
  • Demonstrated that heavy strings can decay before or after the U(1) ′ symmetry breaking.
  • Found that magnetic flux can be either confined or unconfined, influenced by decay sequences.

Abstract

A bstract We investigate cosmic strings arising from a hierarchical gauge symmetry breaking sequence, SU(2) × U(1) → U(1) × U(1) → U(1) ′ → Nothing . This pattern gives rise to two distinct classes of cosmic strings: light, stable strings formed at a later stage, and heavy, metastable strings originating from an earlier stage. Our focus is on the heavy strings, which may decay either before or after the final U(1) ′ symmetry is broken. We analyze the internal structure of these strings and the magnetic flux sourced by monopole-like configurations that emerge at the endpoints of metastable string segments following their decay. Understanding the nature of the magnetic U(1) fluxes associated with these monopole-like objects is crucial for studying the post-decay evolution of the string network. The post-decay evolution influences the resulting gravitational wave signals. We show that the magnetic flux carried by string segments can be either confined or unconfined, depending on the specific sequence of symmetry breaking and string decay.

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Cite This Study

Chitose et al. (2026) studied this question.

synapsesocial.com/papers/69994bdd873532290d01ff63https://doi.org/10.1007/jhep02(2026)166
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