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Scaling of the chiral magnetic effect in quantum diffusive Weyl semimetals

机译:量子扩散Weyl半型缩放手性磁效应

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摘要

We investigate the effect of short-range spin-independent disorder on the chiral magnetic effect (CME) in Weyl semimetals. Based on a minimum two-band model, the disorder effect is examined in the quantum diffusion limit by including the Drude correction and the correction due to the Cooperon channel. It is shown that the Drude correction renormalizes the CME coefficient by a factor to a finite value that is independent of the system size. Furthermore, due to an additional momentum expansion involved in deriving the CME coefficient, the contribution of Cooperon to the CME coefficient is governed by the quartic momentum term. As a result, in contrast to the weak localization and weak antilocalization effects observed in the measurement of conductivity of Dirac fermions, we find that in the limit of zero magnetic field, the CME coefficients of finite systems manifest the same scaling of localization even in three dimensions. Our results indicate that while the chiral magnetic current due to slowly oscillating magnetic fields can exist in clean systems, its observability will be limited by strong suppression due to short-range disorder in condensed matter.
机译:我们调查短程自旋独立紊乱对魏尔半金属的手性磁效应(CME)的影响。基于最小双带模型,所述疾病效果在量子扩散限制通过包括德鲁德校正和因Cooperon信道校正检查。结果表明,德鲁德校正renormalizes通过因子所述CME系数为有限值,该值是独立于系统的尺寸。此外,由于涉及在推导CME系数的额外动量膨胀,Cooperon向CME系数的贡献是由四次动量项的约束。其结果是,相对于在狄拉克费米子的电导率的测定中观察到的弱的本地化和弱antilocalization影响,我们发现,在零磁场的极限,有限系统清单定位甚至在三个相同的缩放的CME系数方面。我们的研究结果表明,虽然由于缓慢振荡磁场的磁手性目前在干净的系统中存在,它的可观性将被强力压制,由于在凝聚态短程障碍的限制。

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  • 来源
    《Physical review, B》 |2018年第24期|共11页
  • 作者单位

    Natl Tsing Hua Univ Ctr Quantum Technol Hsinchu 30043 Taiwan;

    Jiangsu Univ Technol Sch Math &

    Phys Changzhou 213001 Peoples R China;

    Natl Tsing Hua Univ Ctr Quantum Technol Hsinchu 30043 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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