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High-Dimensional Disorder-Driven Phenomena in Weyl Semimetals, Semiconductors, and Related Systems
Annual Review of Condensed Matter Physics ( IF 14.3 ) Pub Date : 2018-03-12 00:00:00 , DOI: 10.1146/annurev-conmatphys-033117-054037
Sergey V. Syzranov 1, 2, 3 , Leo Radzihovsky 1, 4, 5
Affiliation  

It is commonly believed that a noninteracting disordered electronic system can undergo only the Anderson metal-insulator transition. It has been suggested, however, that a broad class of systems can display disorder-driven transitions distinct from Anderson localization that have manifestations in the disorder-averaged density of states, conductivity, and other observables. Such transitions have received particular attention in the context of recently discovered 3D Weyl and Dirac materials but have also been predicted in cold-atom systems with long-range interactions, quantum kicked rotors, and all sufficiently high-dimensional systems. Moreover, such systems exhibit unconventional behavior of Lifshitz tails, energy-level statistics, and ballistic-transport properties. Here, we review recent progress and the status of results on non-Anderson disorder-driven transitions and related phenomena.

中文翻译:


Weyl半金属,半导体和相关系统中的高维无序驱动现象

通常认为,非相互作用的无序电子系统只能经历安德森金属-绝缘体转变。然而,已经提出,各种各样的系统可以显示出与安德森本地化不同的,由无序驱动的转变,其表现为无序平均状态密度,电导率和其他可观测值。在最近发现的3D Weyl和Dirac材料的背景下,这种过渡受到了特别的关注,但是在具有长程相互作用的冷原子系统,量子踢旋子以及所有足够高维的系统中也已经进行了预测。此外,此类系统还表现出Lifshitz尾巴的非常规行为,能级统计数据和弹道运输特性。这里,

更新日期:2018-03-12
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