Noncommutative $p$-wave holographic superconductors

Fuente: arXiv
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Main Authors: Paul, Souvik, Gangopadhyay, Sunandan
Format: Preprint
Published: 2025
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author Paul, Souvik
Gangopadhyay, Sunandan
author_facet Paul, Souvik
Gangopadhyay, Sunandan
contents In this work, we have studied the effects of noncommutative geometry on the properties of p-wave holographic superconductors with massive vector condensates in the probe limit. We have applied the Stürm-Liouville eigenvalue approach to analyse the model. In this model, we have calculated the critical temperature and the value of the condensation operator for two different values of $m^2$. We have also shown how the influence of noncommutative geometry modifies these quantities. Finally, by applying a linearised gauge field perturbation along the boundary direction, we calculated the holographic superconductor's AC conductivity using a self-consistent approach and then carried out a more rigorous analysis. The noncommutative effects are also found to be present in the result of AC conductivity. We have also found that just like the commutative case, here the DC conductivity diverges due to the presence of a first order pole in the frequency regime.
format Preprint
id arxiv_https___arxiv_org_abs_2502_08275
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Noncommutative $p$-wave holographic superconductors
Paul, Souvik
Gangopadhyay, Sunandan
High Energy Physics - Theory
In this work, we have studied the effects of noncommutative geometry on the properties of p-wave holographic superconductors with massive vector condensates in the probe limit. We have applied the Stürm-Liouville eigenvalue approach to analyse the model. In this model, we have calculated the critical temperature and the value of the condensation operator for two different values of $m^2$. We have also shown how the influence of noncommutative geometry modifies these quantities. Finally, by applying a linearised gauge field perturbation along the boundary direction, we calculated the holographic superconductor's AC conductivity using a self-consistent approach and then carried out a more rigorous analysis. The noncommutative effects are also found to be present in the result of AC conductivity. We have also found that just like the commutative case, here the DC conductivity diverges due to the presence of a first order pole in the frequency regime.
title Noncommutative $p$-wave holographic superconductors
topic High Energy Physics - Theory
url https://arxiv.org/abs/2502.08275