Weyl半金属
凝聚态物理
物理
骑士轮班
顺磁性
半金属
量子力学
超导电性
带隙
作者
Zoltán Okvátovity,Hiroshi Yaśuoka,M. Baenitz,F. Simón,Balázs Dóra
出处
期刊:Physical review
日期:2019-03-05
卷期号:99 (11)
被引量:20
标识
DOI:10.1103/physrevb.99.115107
摘要
We first analyze the recent experimental data on the nuclear spin-lattice relaxation rate of the Weyl semimetal TaP. We argue that its non-monotonic temperature dependence is explained by the temperature dependent chemical potential of Weyl fermions. We also develop the theory of the Knight shift in Weyl semimetals, which contains two counteracting terms. The diamagnetic term follows $-\ln[W/\max(|\mu|,k_BT)]$ with $W$, $\mu$ and $T$ being the high energy cutoff, chemical potential and temperature, respectively, and is always negative. The paramagnetic term scales with $\mu$ and changes sign depending on the doping level. Altogether, the Knight shift is predicted to vanish or even change sign upon changing the doping or the temperature, making it a sensitive tool to identify Weyl points. We also calculate the Korringa relation for Weyl semimetals which shows an unusual energy dependence rather than being constant as expected for a non-interacting Fermi system.
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