Enhancement of Josephson Supercurrent in a $π$-Junction state by Chiral Antiferromagnetism

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Hou, Jin-Xing, Sun, Hai-Peng, Trauzettel, Björn, Zhang, Song-Bo
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866914348892422144
author Hou, Jin-Xing
Sun, Hai-Peng
Trauzettel, Björn
Zhang, Song-Bo
author_facet Hou, Jin-Xing
Sun, Hai-Peng
Trauzettel, Björn
Zhang, Song-Bo
contents Magnetic order typically disrupts superconductivity, reducing the supercurrent. Here, we show that chiral antiferromagnetism, with non-relativistic spin-split bands and distinctive valley-locked spin texture, can instead significantly enhance Josephson supercurrents. This enhancement stems from the emergence of dominant equal-spin triplet pairing and strong fluctuations of singlet pairing in momentum space, both induced by chiral antiferromagnetism. We demonstrate these results in Josephson junctions composed of chiral antiferromagnetic metals and conventional superconductors on kagome lattices. Furthermore, we show that the enhanced Josephson supercurrent is stabilized in a $π$-junction state. These phenomena persist across a broad energy range and remain stable for different temperatures and junction lengths. Our results unveil a previously unexplored mechanism for enhancing supercurrent by strong magnetic order and provide crucial insights into the large Josephson currents observed in Mn$_3$Ge.
format Preprint
id arxiv_https___arxiv_org_abs_2507_12842
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Enhancement of Josephson Supercurrent in a $π$-Junction state by Chiral Antiferromagnetism
Hou, Jin-Xing
Sun, Hai-Peng
Trauzettel, Björn
Zhang, Song-Bo
Superconductivity
Magnetic order typically disrupts superconductivity, reducing the supercurrent. Here, we show that chiral antiferromagnetism, with non-relativistic spin-split bands and distinctive valley-locked spin texture, can instead significantly enhance Josephson supercurrents. This enhancement stems from the emergence of dominant equal-spin triplet pairing and strong fluctuations of singlet pairing in momentum space, both induced by chiral antiferromagnetism. We demonstrate these results in Josephson junctions composed of chiral antiferromagnetic metals and conventional superconductors on kagome lattices. Furthermore, we show that the enhanced Josephson supercurrent is stabilized in a $π$-junction state. These phenomena persist across a broad energy range and remain stable for different temperatures and junction lengths. Our results unveil a previously unexplored mechanism for enhancing supercurrent by strong magnetic order and provide crucial insights into the large Josephson currents observed in Mn$_3$Ge.
title Enhancement of Josephson Supercurrent in a $π$-Junction state by Chiral Antiferromagnetism
topic Superconductivity
url https://arxiv.org/abs/2507.12842