Necessary conditions for spin-resolved Josephson diode effect across strongly spin-polarized magnetic materials

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Nikolić, Danilo, Schulz, Niklas L., Eschrig, Matthias
Format: Preprint
Publié: 2025
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866914221344686080
author Nikolić, Danilo
Schulz, Niklas L.
Eschrig, Matthias
author_facet Nikolić, Danilo
Schulz, Niklas L.
Eschrig, Matthias
contents We present a set of necessary conditions for the appearance of charge and spin Josephson diode effects across strongly spin-polarized inhomogeneous magnetic materials (FM) placed between two spin-singlet superconductors. Noncoplanarity of the FM's spin texture gives rise to quantum geometric phases, $Δφ'$, that enter the Josephson current-phase relation (CPR) similarly to the superconducting phase difference, resulting in charge and spin Josephson diode effects. Our study shows that such effects appear if the CPR possesses no phase-inversion center, achieved under the following conditions. First, noncoplanarity of the spin texture is necessary to break the spatial inversion symmetry. Second, both spin bands have to contribute to the transport, i.e., the effect is absent in half-metallic junctions. Third, different band-specific densities of states are required, and this condition is ensured by the strong spin polarization of the FM. Finally, higher harmonics in the CPR are necessary, i.e., the effect is absent in the tunneling limit. However, even in this case, the CPR must not have a phase-inversion center, which is ensured by the restriction of the quantum geometric phase to values $Δφ'\neq kπ/2, k\in\mathbb{Z}$. We formulate a minimal phenomenological model that incorporates all these points, qualitatively illustrating our theory.
format Preprint
id arxiv_https___arxiv_org_abs_2512_22017
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Necessary conditions for spin-resolved Josephson diode effect across strongly spin-polarized magnetic materials
Nikolić, Danilo
Schulz, Niklas L.
Eschrig, Matthias
Superconductivity
Mesoscale and Nanoscale Physics
We present a set of necessary conditions for the appearance of charge and spin Josephson diode effects across strongly spin-polarized inhomogeneous magnetic materials (FM) placed between two spin-singlet superconductors. Noncoplanarity of the FM's spin texture gives rise to quantum geometric phases, $Δφ'$, that enter the Josephson current-phase relation (CPR) similarly to the superconducting phase difference, resulting in charge and spin Josephson diode effects. Our study shows that such effects appear if the CPR possesses no phase-inversion center, achieved under the following conditions. First, noncoplanarity of the spin texture is necessary to break the spatial inversion symmetry. Second, both spin bands have to contribute to the transport, i.e., the effect is absent in half-metallic junctions. Third, different band-specific densities of states are required, and this condition is ensured by the strong spin polarization of the FM. Finally, higher harmonics in the CPR are necessary, i.e., the effect is absent in the tunneling limit. However, even in this case, the CPR must not have a phase-inversion center, which is ensured by the restriction of the quantum geometric phase to values $Δφ'\neq kπ/2, k\in\mathbb{Z}$. We formulate a minimal phenomenological model that incorporates all these points, qualitatively illustrating our theory.
title Necessary conditions for spin-resolved Josephson diode effect across strongly spin-polarized magnetic materials
topic Superconductivity
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2512.22017