Robust realization of spin-polarized specular Andreev reflection in V 2 O-based altermagnets

arXiv:2604.12695 · cond-mat.supr-con, cond-mat.mes-hall · Submitted 2026-04-14 · Read on arXiv

cond-mat.supr-con, cond-mat.mes-hall

Submitted: 2026-04-14

Updated: 2026-09-21

Comments: 14 pages, 7 figures

Journal ref: Phys. Rev. B 114, 134513 (2026)

DOI: 10.1103/311w-d5y1

Code: https://github.com/nagaephysics0204ops/datasets

License: http://creativecommons.org/licenses/by/4.0/

The gist: We theoretically investigate charge transport in a junction between a conventional superconductor and a V 2 O-based altermagnet exhibiting distinctive spin-split quasi-one-dimensional Fermi surfaces.

Terminology

Abstract

We theoretically investigate charge transport in a junction between a conventional superconductor and a V 2 O-based altermagnet exhibiting distinctive spin-split quasi-one-dimensional Fermi surfaces. The altermagnet is described by a microscopically motivated seven-basis-state model with six-orbital characters that incorporates sublattice degrees of freedom associated with both V and O sites. Based on calculations performed under various boundary conditions, we demonstrate the robust emergence of specular Andreev reflection with a distinctive spin polarization. Furthermore, we propose an efficient multiterminal setup to detect this specular Andreev reflection through nonlocal conductance measurements. Our results establish V 2 O-based altermagnets as a promising platform for realizing spin-resolved Cooper pair splitting, which is essential for generating energy-entangled electron pairs.

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