Robust realization of spin-polarized specular Andreev reflection in V$_2$O-based altermagnets
Abstract
We theoretically investigate charge transport in a junction between a conventional superconductor and a VO-based altermagnet exhibiting distinctive spin-split quasi-one-dimensional Fermi surfaces. The altermagnet is described by a microscopically motivated six-orbital model 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 VO-based altermagnets as a promising platform for realizing spin-resolved Cooper pair splitting, which is essential for generating energy-entangled electron pairs.
Cite
@article{arxiv.2604.12695,
title = {Robust realization of spin-polarized specular Andreev reflection in V$_2$O-based altermagnets},
author = {Yutaro Nagae and Andreas P. Schnyder and Satoshi Ikegaya},
journal= {arXiv preprint arXiv:2604.12695},
year = {2026}
}
Comments
12 pages, 6 figures