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Global phase diagram of Coulomb-interacting anisotropic Weyl semimetal with disorder

机译:库仑相互作用的全局相提并论紊乱

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摘要

Taking into account the interplay between the disorder and Coulomb interaction, the phase diagram of three-dimensional anisotropic Weyl semimetal is studied by renormalization group (RG) theory. Weak disorder is irrelevant in anisotropic Weyl semimetal, while the disorder becomes relevant and drives a quantum phase transition (QPT) from semimetal to compressible diffusive metal (CDM) phases if the disorder strength is larger than a critical value. The long-range Coulomb interaction is irrelevant in clean anisotropic Weyl semimetal. However, interestingly, we find that the long-range Coulomb interaction exerts a dramatic influence on the critical disorder strength for phase transition to CDM. Specifically, the critical disorder strength can receive a prominent change even though an arbitrarily weak Coulomb interaction is included. This novel behavior is closely related to the anisotropic screening effect of Coulomb interaction, and essentially results from the specifical energy dispersion of the fermion excitations in anisotropic Weyl semimetal. The theoretical results are helpful for understanding the physical properties of the candidates of anisotropic Weyl semimetal, such as pressured BiTeI, and some other related materials.
机译:考虑无序与库仑相互作用的相互作用,用重整化群理论研究了三维各向异性Weyl半金属的相图。在各向异性Weyl半金属中,弱无序是不相关的,而如果无序强度大于临界值,则无序变得相关,并驱动从半金属到可压缩扩散金属(CDM)相的量子相变(QPT)。在清洁的各向异性Weyl半金属中,长程库仑相互作用是无关的。然而,有趣的是,我们发现长程库仑相互作用对CDM相变的临界无序强度有显著影响。具体来说,即使包含任意弱库仑相互作用,临界无序强度也会发生显著变化。这种新的行为与库仑相互作用的各向异性屏蔽效应密切相关,本质上是各向异性Weyl半金属中费米子激发的特定能量色散的结果。理论结果有助于理解各向异性Weyl半金属候选材料的物理性质,如加压BiTeI和其他一些相关材料。

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