Twisted Holographic Superconductors in External Magnetic Field

Fuente: arXiv
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Autores principales: Potrebić, Jovan, Gočanin, Dragoljub
Formato: Preprint
Publicado: 2026
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author Potrebić, Jovan
Gočanin, Dragoljub
author_facet Potrebić, Jovan
Gočanin, Dragoljub
contents Among various applications of the AdS/CFT correspondence in condensed matter physics of particular importance is the realization of the phase transition between the normal and superconducting phase in a holographic QFT. After seminal papers on holographic superconductors that introduced the basic setup, one of the main lines of development focused on capturing the Meissner effect with all the relevant parameters, which requires inclusion of an external magnetic field. Although a complete holographic description of a superconductor is still lacking, the basic elements of the gravitational systems dual to what can be most accurately characterized as a charged superfluid have been established. Using holographic setups for describing three- and four-dimensional superconductors, we investigate the effect of noncommutative twist deformation of bulk fields on the phase transition parameters, such as the critical magnetic field and condensate. In a wider context, our results represent a first systematic attempt to elucidate the role of noncommutative gauge field theory as part of the bulk description of condensed matter systems.
format Preprint
id arxiv_https___arxiv_org_abs_2603_15572
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Twisted Holographic Superconductors in External Magnetic Field
Potrebić, Jovan
Gočanin, Dragoljub
High Energy Physics - Theory
Among various applications of the AdS/CFT correspondence in condensed matter physics of particular importance is the realization of the phase transition between the normal and superconducting phase in a holographic QFT. After seminal papers on holographic superconductors that introduced the basic setup, one of the main lines of development focused on capturing the Meissner effect with all the relevant parameters, which requires inclusion of an external magnetic field. Although a complete holographic description of a superconductor is still lacking, the basic elements of the gravitational systems dual to what can be most accurately characterized as a charged superfluid have been established. Using holographic setups for describing three- and four-dimensional superconductors, we investigate the effect of noncommutative twist deformation of bulk fields on the phase transition parameters, such as the critical magnetic field and condensate. In a wider context, our results represent a first systematic attempt to elucidate the role of noncommutative gauge field theory as part of the bulk description of condensed matter systems.
title Twisted Holographic Superconductors in External Magnetic Field
topic High Energy Physics - Theory
url https://arxiv.org/abs/2603.15572