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Adiabatic photo-steering theory in topological insulators

机译:拓扑绝缘体的绝热光导理论

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摘要

Feasible external control of material properties is a crucial issue in condensed matter physics. A new approach to achieving this aim, named adiabatic photo-steering, is reviewed. The core principle of this scheme is that several material constants are effectively turned into externally tunable variables by irradiation of monochromatic laser light. Two-dimensional topological insulators are selected as the optimal systems that exhibit a prominent change in their properties following the application of this method. Two specific examples of photo-steered quantum phenomena, which reflect topological aspects of the electronic systems at hand, are presented. One is the integer quantum Hall effect described by the Haldane model, and the other is the quantum spin Hall effect described by the Kane–Mele model. The topological quantities associated with these phenomena are the conventional Chern number and spin Chern number, respectively. A recent interesting idea, time-reversal symmetry breaking via a temporary periodic external stimulation, is also discussed.
机译:材料性能的可行外部控制是凝聚态物理中的关键问题。审查了一种实现该目标的新方法,称为绝热光导。该方案的核心原理是,通过单色激光的照射,可以将几个材料常数有效地转换为外部可调变量。选择二维拓扑绝缘体作为应用该方法后其性能发生显着变化的最佳系统。给出了光控量子现象的两个具体示例,它们反映了手头电子系统的拓扑方面。一种是Haldane模型描述的整数量子霍尔效应,另一种是Kane-Mele模型描述的量子自旋霍尔效应。与这些现象相关的拓扑量分别是常规的Chern数和自旋Chern数。还讨论了最近的一个有趣的想法,即通过暂时的周期性外部刺激来打破时间反转对称性。

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