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    Andreev reflection anomaly in superconducting Weyl semimetal junctions

    Mou Yang*, Yun-Peng Kong, Hou-Jian Duan, Ming-Xun Deng, and Rui-Qiang Wang

    • Guangdong Basic Research Center of Excellence for Structure and Fundamental Interactions of Matter, Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, School of Physics, South China Normal University, Guangzhou 510006, China

    • *Contact author: yang.mou@hotmail.com

    Phys. Rev. B 113, 115303 – Published 4 March, 2026

    DOI: https://doi.org/10.1103/ttn8-bx3j

    Abstract

    We investigate the transport properties of the interface between normal and superconducting Weyl semimetals. We find that the Fermi arcs on the junction interface consist of two types of arc fragments: localized Fermi arcs, composed of states entirely confined to the interface, and resonant Fermi arcs, formed by states partially localized at the interface. The existence of these interface resonant states arises from the interaction between interface Fermi arcs and superconductivity. These resonant states induce an Andreev reflection anomaly, where Andreev reflection is significantly enhanced and its probability reaches unity at a specific momentum space point where the resonant states merge into the bulk continuum. The Andreev reflection anomaly generates an additional supercurrent, which becomes most pronounced when the incident Fermi pocket is tangent to the transmissive one.

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