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A new exotic state in an old material: A tale of SmB_6 (Review)

机译:旧材料中的新异国情调:SmB_6的故事(回顾)

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摘要

We review current theoretical and experimental efforts to identify a novel class of intermetallic 4f and 5f orbital materials in which strong interactions between itinerant and predominately localized degrees of freedom give rise to a bulk insulating state at low temperatures, while the surface remains metallic. This effect arises due to inversion of even-parity conduction bands and odd-parity very narrow f-electron bands. The number of band inversions is mainly determined by the crystal symmetry of a material and the corresponding degeneracy of the hybridized f-electron bands. For an odd number of band inversions, the metallic surface states are chiral and therefore remain robust against disorder and time-reversal invariant perturbations. We discuss a number of unresolved theoretical issues specific to topological Kondo insulators and outline experimental challenges in probing the chiral surface states in these materials.
机译:我们回顾了当前的理论和实验工作,以确定一类新型的金属间4f和5f轨道材料,其中,流动剂和主要是局部自由度之间的强相互作用在低温下产生体绝缘状态,而表面仍保持金属状态。由于偶数奇偶校验导带和奇数奇偶校验非常窄的f电子带的反转而产生这种效应。能带反转的数量主要由材料的晶体对称性和杂化的f电子能带的相应简并性决定。对于奇数个带反转,金属表面态是手性的,因此对于无序和时间反向不变扰动保持稳健。我们讨论了拓扑Kondo绝缘子的许多未解决的理论问题,并概述了探索这些材料中手性表面态的实验挑战。

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