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使用短周期对称双金属光栅反射器增强砷化镓纳米线激光器的反射

Enhanced Reflection of GaAs Nanowire Laser Using Short-Period, Symmetric Double Metal Grating Reflectors.

作者信息

Yu Qun, Wei Wei, Yan Xin, Zhang Xia

机构信息

School of Electronics and Communication Engineering, Guangzhou University, Guangzhou 510006, China.

State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China.

出版信息

Nanomaterials (Basel). 2022 Apr 27;12(9):1482. doi: 10.3390/nano12091482.

Abstract

Owing to the high contrast of the refractive indices at the end facets of a nanowire, lasing emission can be achieved in an individual nanowire without external, reflected feedback. However, the reflection provided by the end facet is not high enough to lower the threshold gain, especially for nanowires with smaller diameters. This work proposes a novel structure of nanowire laser partially sandwiched in double Ag gratings. Compared to a nanowire with a single metal grating or without a grating, the parallel double metal gratings play the reflector role with higher reflectivity to enhance the round-trip feedback and reduce the threshold gain. The reflective properties are calculated using the finite elements method. Simulation results show that a high reflectivity of more than 90% can be achieved when the number of periods is more than 8. The reflectivity of double gratings is 2.4 times larger than that of the nanowire end facet for large nanowire diameters. When the nanowire has a small diameter of 150 nm, the reflectivity of double gratings is 17 times larger than that of the nanowire end facet. Compared to a single grating, the reflective performance of double gratings is much better. Owing to the highly reflective properties of the double gratings, nanowires partially sandwiched in the double gratings can realize lasing emission at a very low threshold gain, and the period of the grating can be very short to benefit on-chip interconnection systems.

摘要

由于纳米线端面处折射率的高对比度,在单个纳米线中无需外部反射反馈即可实现激光发射。然而,端面提供的反射不够高,不足以降低阈值增益,特别是对于直径较小的纳米线。这项工作提出了一种部分夹在双银光栅中的新型纳米线激光器结构。与具有单个金属光栅或没有光栅的纳米线相比,平行双金属光栅起到具有更高反射率的反射器作用,以增强往返反馈并降低阈值增益。使用有限元方法计算反射特性。模拟结果表明,当周期数大于8时,可以实现超过90%的高反射率。对于大直径纳米线,双光栅的反射率比纳米线端面的反射率大2.4倍。当纳米线直径为150nm时,双光栅的反射率比纳米线端面的反射率大17倍。与单个光栅相比,双光栅的反射性能要好得多。由于双光栅的高反射特性,部分夹在双光栅中的纳米线可以在非常低的阈值增益下实现激光发射,并且光栅的周期可以非常短,有利于片上互连系统。

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