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单晶铝上的高操作温度等离子体纳米激光器。

High-Operation-Temperature Plasmonic Nanolasers on Single-Crystalline Aluminum.

机构信息

Institute of Lighting and Energy Photonics, National Chiao Tung University , Tainan 71150, Taiwan.

出版信息

Nano Lett. 2016 May 11;16(5):3179-86. doi: 10.1021/acs.nanolett.6b00537. Epub 2016 Apr 21.

Abstract

The recent development of plasmonics has overcome the optical diffraction limit and fostered the development of several important components including nanolasers, low-operation-power modulators, and high-speed detectors. In particular, the advent of surface-plasmon-polariton (SPP) nanolasers has enabled the development of coherent emitters approaching the nanoscale. SPP nanolasers widely adopted metal-insulator-semiconductor structures because the presence of an insulator can prevent large metal loss. However, the insulator is not necessary if permittivity combination of laser structures is properly designed. Here, we experimentally demonstrate a SPP nanolaser with a ZnO nanowire on the as-grown single-crystalline aluminum. The average lasing threshold of this simple structure is 20 MW/cm(2), which is four-times lower than that of structures with additional insulator layers. Furthermore, single-mode laser operation can be sustained at temperatures up to 353 K. Our study represents a major step toward the practical realization of SPP nanolasers.

摘要

近年来,等离子体激元学的发展克服了光学衍射极限,促进了包括纳米激光器、低功耗调制器和高速探测器在内的几个重要组件的发展。特别是,表面等离激元极化激元(SPP)纳米激光器的出现使接近纳米尺度的相干发射器的发展成为可能。SPP 纳米激光器广泛采用金属-绝缘体-半导体结构,因为存在绝缘体可以防止大的金属损耗。然而,如果适当设计激光结构的介电常数组合,则不需要绝缘体。在这里,我们实验演示了一种在生长的单晶铝上的 ZnO 纳米线 SPP 纳米激光器。这种简单结构的平均激光阈值为 20MW/cm(2),比具有附加绝缘层的结构低四倍。此外,单模激光操作可以在高达 353K 的温度下维持。我们的研究代表了朝着实用 SPP 纳米激光器的方向迈出的重要一步。

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