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拓扑绝缘子激光器:理论。

Topological insulator laser: Theory.

机构信息

Physics Department and Solid State Institute, Technion-Israel Institute of Technology, Haifa 32000, Israel.

Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Science. 2018 Mar 16;359(6381). doi: 10.1126/science.aar4003. Epub 2018 Feb 1.

Abstract

Topological insulators are phases of matter characterized by topological edge states that propagate in a unidirectional manner that is robust to imperfections and disorder. These attributes make topological insulator systems ideal candidates for enabling applications in quantum computation and spintronics. We propose a concept that exploits topological effects in a unique way: the topological insulator laser. These are lasers whose lasing mode exhibits topologically protected transport without magnetic fields. The underlying topological properties lead to a highly efficient laser, robust to defects and disorder, with single-mode lasing even at very high gain values. The topological insulator laser alters current understanding of the interplay between disorder and lasing, and at the same time opens exciting possibilities in topological physics, such as topologically protected transport in systems with gain. On the technological side, the topological insulator laser provides a route to arrays of semiconductor lasers that operate as one single-mode high-power laser coupled efficiently into an output port.

摘要

拓扑绝缘体是一类具有拓扑边缘态的物质相,这些边缘态沿单一方向传播,对非理想和无序具有鲁棒性。这些特性使得拓扑绝缘体系统成为实现量子计算和自旋电子学应用的理想候选者。我们提出了一个利用拓扑效应的独特概念:拓扑绝缘体激光。这些激光的激射模式表现出无需磁场的拓扑保护传输。底层的拓扑性质导致了一种高效的激光,对缺陷和无序具有鲁棒性,即使在非常高的增益值下也能实现单模激射。拓扑绝缘体激光改变了人们对无序和激射相互作用的现有理解,同时在拓扑物理领域开辟了令人兴奋的可能性,例如在具有增益的系统中实现拓扑保护传输。在技术方面,拓扑绝缘体激光为半导体激光器阵列提供了一种途径,这些激光器阵列可以作为一个高效耦合到输出端口的单模高功率激光来运作。

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