Signatures of edge states in antiferromagnetic van der Waals Josephson junctions

Fuente: arXiv
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Main Authors: González-Sánchez, Celia, Sardinero, Ignacio, Cuadra, Jorge, Spuri, Alfredo, Moreno, José A., Suderow, Hermann, Scheer, Elke, Burset, Pablo, Di Bernardo, Angelo, Souto, Rubén Seoane, Lee, Eduardo J. H.
Format: Preprint
Published: 2025
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author González-Sánchez, Celia
Sardinero, Ignacio
Cuadra, Jorge
Spuri, Alfredo
Moreno, José A.
Suderow, Hermann
Scheer, Elke
Burset, Pablo
Di Bernardo, Angelo
Souto, Rubén Seoane
Lee, Eduardo J. H.
author_facet González-Sánchez, Celia
Sardinero, Ignacio
Cuadra, Jorge
Spuri, Alfredo
Moreno, José A.
Suderow, Hermann
Scheer, Elke
Burset, Pablo
Di Bernardo, Angelo
Souto, Rubén Seoane
Lee, Eduardo J. H.
contents The combination of superconductivity and magnetic textures represents a promising approach to explore unconventional superconducting phenomena, including new correlated and topological phases. Van der Waals (vdW) materials have emerged in this context as a versatile platform to explore the interplay between these two competing orders. Here, we report on individual NbSe2/NiPS3/NbSe2 vdW Josephson junctions behaving as superconducting quantum interference devices (SQUIDs), which we attribute to the interplay between the superconductivity of NbSe2 and the spin texture of the vdW antiferromagnetic insulator NiPS3. The SQUID behavior, which persists for in-plane magnetic fields of at least 6 T, is the result of interference between localized transport channels that form in two separate regions of the sample. Microscopic modeling of the antiferromagnet insulator/superconductor (AFI/S) interface reveals the formation of localized states at the edges of the junction that can lead to localized channels that dominate the transport. Our findings highlight the potential of vdW superconducting heterostructures with AFs as platforms for engineering and probing novel superconducting phenomena, and they establish a new route for lithographic-free SQUIDs that operate in high magnetic fields.
format Preprint
id arxiv_https___arxiv_org_abs_2505_18578
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Signatures of edge states in antiferromagnetic van der Waals Josephson junctions
González-Sánchez, Celia
Sardinero, Ignacio
Cuadra, Jorge
Spuri, Alfredo
Moreno, José A.
Suderow, Hermann
Scheer, Elke
Burset, Pablo
Di Bernardo, Angelo
Souto, Rubén Seoane
Lee, Eduardo J. H.
Superconductivity
Mesoscale and Nanoscale Physics
The combination of superconductivity and magnetic textures represents a promising approach to explore unconventional superconducting phenomena, including new correlated and topological phases. Van der Waals (vdW) materials have emerged in this context as a versatile platform to explore the interplay between these two competing orders. Here, we report on individual NbSe2/NiPS3/NbSe2 vdW Josephson junctions behaving as superconducting quantum interference devices (SQUIDs), which we attribute to the interplay between the superconductivity of NbSe2 and the spin texture of the vdW antiferromagnetic insulator NiPS3. The SQUID behavior, which persists for in-plane magnetic fields of at least 6 T, is the result of interference between localized transport channels that form in two separate regions of the sample. Microscopic modeling of the antiferromagnet insulator/superconductor (AFI/S) interface reveals the formation of localized states at the edges of the junction that can lead to localized channels that dominate the transport. Our findings highlight the potential of vdW superconducting heterostructures with AFs as platforms for engineering and probing novel superconducting phenomena, and they establish a new route for lithographic-free SQUIDs that operate in high magnetic fields.
title Signatures of edge states in antiferromagnetic van der Waals Josephson junctions
topic Superconductivity
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2505.18578