期刊论文详细信息
Detecting monopole charge in Weyl semimetals via quantum interference transport
Article
关键词: FERMION SEMIMETAL;    MAGNETORESISTANCE;    PHASE;    DISCOVERY;    ARCS;   
DOI  :  10.1103/PhysRevB.93.161110
来源: SCIE
【 摘 要 】

Topological Weyl semimetals can host Weyl nodes with monopole charges in momentum space. How to detect the signature of the monopole charges in quantum transport remains a challenging topic. Here, we reveal the connection between the parity of monopole charge in topological semimetals and the quantum interference corrections to the conductivity. We show that the parity of monopole charge determines the sign of the quantum interference correction, with odd and even parity yielding the weak antilocalization and weak localization effects, respectively. This is attributed to the Berry phase difference between time-reversed trajectories circulating the Fermi sphere that encloses the monopole charges. From standard Feynman diagram calculations, we further show that the weak-field magnetoconductivity at low temperatures is proportional to +root B in double-Weyl semimetals and -root B in single-Weyl semimetals, respectively, which could be verified experimentally.

【 授权许可】

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