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二维电子系统中常规和拓扑绝缘体之间的光致相变。

Photoinduced transition between conventional and topological insulators in two-dimensional electronic systems.

机构信息

National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan.

出版信息

Phys Rev Lett. 2010 Jul 2;105(1):017401. doi: 10.1103/PhysRevLett.105.017401. Epub 2010 Jun 28.

Abstract

Manipulating the topological properties of insulators, encoded in invariants such as the Chern number and its generalizations, is now a major issue for realizing novel charge or spin responses in electron systems. We propose that a simple optical means, subjecting to a driving laser field with circular polarization, can be fruitfully incorporated to this end. Taking as a prototypical example the two-band insulator first considered by Haldane, we show how the electron system can be tuned through phases associated with different Chern numbers as the laser intensity is adiabatically swept, i.e., a photoinduced analog of the quantum Hall plateau transition. The implications of our findings include the possibility of laser tuning a conventional insulator into a quantum spin Hall system.

摘要

操控绝缘体的拓扑性质,这些性质被编码在不变量中,如陈数及其推广,现在是实现电子系统中新型电荷或自旋响应的一个主要问题。我们提出,一种简单的光学手段,通过具有圆偏振的驱动激光场,可以有效地应用于这一目的。以 Haldane 首先考虑的双带绝缘体为例,我们展示了电子系统如何在激光强度绝热扫描时通过与不同陈数相关的相来进行调谐,即量子霍尔平台跃迁的光诱导类似物。我们研究结果的意义包括激光调谐传统绝缘体成为量子自旋霍尔系统的可能性。

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