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New Type of String Solutions with Long Range Forces

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arxiv 1910.14321 v2 pith:N7G5IHJ6 submitted 2019-10-31 hep-ph astro-ph.COhep-th

classification hep-phastro-ph.COhep-th
keywords stringscalarfieldstringsuncompensatedcomplexexpectationgauge
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We explore the formation and the evolution of the string network in the Abelian Higgs model with two complex scalar fields. A special feature of the model is that it possesses a global $U(1)$ symmetry in addition to the $U(1)$ gauge symmetry. Both symmetries are spontaneously broken by the vacuum expectation values of the two complex scalar fields. As we will show the dynamics of the string network is quite rich compared with that in the ordinary Abelian Higgs model with a single complex scalar field. In particular, we find a new type of string solutions in addition to the conventional Abrikosov-Nielsen-Olesen (local) string solution. We call this the uncompensated string. An isolated uncompensated string has a logarithmic divergent string tension as in the case of the global strings, although it is accompanied by a non-trivial gauge field configuration. We also perform classical lattice simulations in the $2+1$ dimensional spacetime, which confirms the formation of the uncompensated strings at the phase transition. We also find that most of the uncompensated strings evolve into the local strings at later time when the gauge charge of the scalar field with a smaller vacuum expectation value is larger than that of the scalar field with a larger vacuum expectation value.

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  1. A quality-coupling relation in chiral $U(1)_{B-L}$ axion model

    hep-ph 2026-08 conditional novelty 6.0 of 10

    In this chiral U(1)_{B-L} axion model, demanding high axion quality forces a minimal axion-electron coupling that can exceed standard KSVZ-model predictions.

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