Superconductivity with repulsion: a variational approach

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Fanfarillo, Laura, Cao, Yifu, Setty, Chandan, Caprara, Sergio, Hirschfeld, Peter J.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911218895159296
author Fanfarillo, Laura
Cao, Yifu
Setty, Chandan
Caprara, Sergio
Hirschfeld, Peter J.
author_facet Fanfarillo, Laura
Cao, Yifu
Setty, Chandan
Caprara, Sergio
Hirschfeld, Peter J.
contents We revisit the stability of the superconducting state within mean-field theory in the presence of repulsive pairing interactions, focusing on multiband systems where such channels naturally arise. We show that, when repulsion is present, the self-consistent BCS solution appears as a saddle point of the conventional mean-field free energy, casting doubt on its physical stability. We show that this pathology is an artifact of using a non-variational functional. Recasting the problem with Bogoliubov's variational principle restores a free energy that is bounded from below and places the BCS solution at a genuine minimum. Using a two-band toy model relevant to iron-based superconductors, we demonstrate the stability of the s$_\pm$ state and clarify how projection schemes that rely only on the interaction matrix can misidentify the attractive eigenmode that drives pairing. Our results clarify the instability issue highlighted by Aase et al. and provide a consistent foundation for analyzing fluctuations in the presence of repulsive interactions.
format Preprint
id arxiv_https___arxiv_org_abs_2506_13556
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Superconductivity with repulsion: a variational approach
Fanfarillo, Laura
Cao, Yifu
Setty, Chandan
Caprara, Sergio
Hirschfeld, Peter J.
Superconductivity
We revisit the stability of the superconducting state within mean-field theory in the presence of repulsive pairing interactions, focusing on multiband systems where such channels naturally arise. We show that, when repulsion is present, the self-consistent BCS solution appears as a saddle point of the conventional mean-field free energy, casting doubt on its physical stability. We show that this pathology is an artifact of using a non-variational functional. Recasting the problem with Bogoliubov's variational principle restores a free energy that is bounded from below and places the BCS solution at a genuine minimum. Using a two-band toy model relevant to iron-based superconductors, we demonstrate the stability of the s$_\pm$ state and clarify how projection schemes that rely only on the interaction matrix can misidentify the attractive eigenmode that drives pairing. Our results clarify the instability issue highlighted by Aase et al. and provide a consistent foundation for analyzing fluctuations in the presence of repulsive interactions.
title Superconductivity with repulsion: a variational approach
topic Superconductivity
url https://arxiv.org/abs/2506.13556