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Phase transition on superfluid vortices in Higgs-Confinement crossover

Phase transition on superfluid vortices in Higgs-Confinement crossover

来源:Arxiv_logoArxiv
英文摘要

We propose a novel method to distinguish states of matter by identifying spontaneous symmetry breaking on extended objects, such as vortices, even in the absence of a bulk phase transition. As a specific example, we investigate the phase transition on superfluid vortices in the Higgs-confinement crossover using a $\mathrm{U}(1)_\mathrm{gauge} \times \mathrm{U}(1)_\mathrm{global}$ model. This model exhibits superfluidity of $\mathrm{U}(1)_\mathrm{global}$ symmetry and allows for a crossover between the Higgs and confinement regimes by varying the gauge coupling constant from weak to strong. We demonstrate that, on vortices, spontaneous breaking of the $\mathbb{Z}_2$ flavor symmetry occurs in the weak coupling (Higgs) regime, while it does not in the strong coupling (confinement) regime. We also confirm that those regimes are separated by a second-order phase transition through Monte Carlo simulations, whose universality class corresponds to the two-dimensional Ising model.

Tomoya Hayata、Yoshimasa Hidaka、Dan Kondo

物理学

Tomoya Hayata,Yoshimasa Hidaka,Dan Kondo.Phase transition on superfluid vortices in Higgs-Confinement crossover[EB/OL].(2024-11-06)[2025-04-29].https://arxiv.org/abs/2411.03676.点此复制

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