Perfect spin nonreciprocity in gated superconducting altermagnetic heterostructures

Fuente: arXiv
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Main Authors: Fu, Pei-Hao, Liu, Jun-Feng, Chirolli, Luca, Cayao, Jorge
Format: Preprint
Published: 2026
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author Fu, Pei-Hao
Liu, Jun-Feng
Chirolli, Luca
Cayao, Jorge
author_facet Fu, Pei-Hao
Liu, Jun-Feng
Chirolli, Luca
Cayao, Jorge
contents We consider a superconducting altermagnet heterostructure and demonstrate that the interplay between altermagnetism and a selective filter of transverse momentum channels enables perfect nonreciprocal spin-polarized currents. We demonstrate that this nonreciprocity manifests in both local and nonlocal spin currents, signalling the emergence of directionally selective local and nonlocal spin behaviors. We show that the selective filter of transverse momentum channels is realized by gating a finite normal region between the superconducting altermagnet and the metallic reservoir, which then directionally selects transport channels that match the momentum-dependent spin-split superconducting altermagnetic states, allowing for nonreciprocal spin-polarized currents. We discover that the local and nonlocal spin nonreciprocity features a highly tunable polarity and nearly perfect quality factors, respectively, which is achieved by means of gate voltages and by varying the length of the finite region. Moreover, we find that local and nonlocal charge currents also develop a nonreciprocal behavior, whose quality factors can also reach perfect values. In all cases, the spin and charge currents are sensitive to variations of the altermagnetic field, a functional dependence that can be exploited to identify the type of altermagnetism. Our findings put forward an electrically controllable route towards nonreciprocal superconducting spintronic devices based on altermagnets.
format Preprint
id arxiv_https___arxiv_org_abs_2604_20312
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Perfect spin nonreciprocity in gated superconducting altermagnetic heterostructures
Fu, Pei-Hao
Liu, Jun-Feng
Chirolli, Luca
Cayao, Jorge
Superconductivity
Mesoscale and Nanoscale Physics
We consider a superconducting altermagnet heterostructure and demonstrate that the interplay between altermagnetism and a selective filter of transverse momentum channels enables perfect nonreciprocal spin-polarized currents. We demonstrate that this nonreciprocity manifests in both local and nonlocal spin currents, signalling the emergence of directionally selective local and nonlocal spin behaviors. We show that the selective filter of transverse momentum channels is realized by gating a finite normal region between the superconducting altermagnet and the metallic reservoir, which then directionally selects transport channels that match the momentum-dependent spin-split superconducting altermagnetic states, allowing for nonreciprocal spin-polarized currents. We discover that the local and nonlocal spin nonreciprocity features a highly tunable polarity and nearly perfect quality factors, respectively, which is achieved by means of gate voltages and by varying the length of the finite region. Moreover, we find that local and nonlocal charge currents also develop a nonreciprocal behavior, whose quality factors can also reach perfect values. In all cases, the spin and charge currents are sensitive to variations of the altermagnetic field, a functional dependence that can be exploited to identify the type of altermagnetism. Our findings put forward an electrically controllable route towards nonreciprocal superconducting spintronic devices based on altermagnets.
title Perfect spin nonreciprocity in gated superconducting altermagnetic heterostructures
topic Superconductivity
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2604.20312