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Vacuum and Vortices in Inhomogeneous Abelian Higgs Model

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arxiv 2409.12451 v2 pith:WT3R4HIQ submitted 2024-09-19 hep-th cond-mat.supr-con

classification hep-thcond-mat.supr-con
keywords brokenimpuritymagneticenergyinhomogeneousminimumspatialvacuum
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abstract

The inhomogeneous abelian Higgs model with a magnetic impurity in the BPS limit is studied for both relativistic and nonrelativistic regimes. Though the symmetry of spatial translation is broken by inhomogeneity, extension to an $\mathcal{N}=1$ supersymmetric theory is admitted. The quartic scalar potential has minimum value depending on strength of the impurity but possesses broken phase at spatial asymptote. The vacuum configuration of broken phase can be neither a constant nor the minimum of the scalar potential, but is found as a nontrivial solution of the Bogomolny equations. While its energy density and magnetic field are given by the function of spatial coordinates, the energy and magnetic flux remain zero. The sign of the magnetic impurity term allows either a BPS sector or anti-BPS sector but not both. Thus the obtained solution is identified as the new inhomogeneous broken vacuum of minimum zero energy. In the presence of rotationally symmetric Gaussian type inhomogeneity, topological vortex solutions are also obtained and the effects of the impurity to the vortex are numerically analyzed.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Field Theory of Superconductor and Charged Vortex

    cond-mat.supr-con 2025-05 conditional novelty 7.0 of 10

    The paper proposes a Lagrangian for superconductivity with a phonon field and shows that at two critical couplings, charged vortices saturate a BPS bound at the type I/II boundary.

  2. Charged Vortex in Superconductor

    cond-mat.supr-con 2025-05 conditional novelty 5.0 of 10

    Charged, spinless vortex solutions exist in a Schrödinger-type superconductor model only at the critical phonon coupling, and become noninteracting BPS vortices at the critical quartic coupling.

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