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大规模统计光学泵浦纳米线激光器的阈值优化。

Large-Scale Statistics for Threshold Optimization of Optically Pumped Nanowire Lasers.

机构信息

School of Physics and Astronomy and the Photon Science Institute, The University of Manchester , Manchester M13 9PL, U.K.

Department of Electronic Materials Engineering, Research School of Physics and Engineering, The Australian National University , Canberra, ACT 0200, Australia.

出版信息

Nano Lett. 2017 Aug 9;17(8):4860-4865. doi: 10.1021/acs.nanolett.7b01725. Epub 2017 Jul 25.

Abstract

Single nanowire lasers based on bottom-up III-V materials have been shown to exhibit room-temperature near-infrared lasing, making them highly promising for use as nanoscale, silicon-integrable, and coherent light sources. While lasing behavior is reproducible, small variations in growth conditions across a substrate arising from the use of bottom-up growth techniques can introduce interwire disorder, either through geometric or material inhomogeneity. Nanolasers critically depend on both high material quality and tight dimensional tolerances, and as such, lasing threshold is both sensitive to and a sensitive probe of such inhomogeneity. We present an all-optical characterization technique coupled to statistical analysis to correlate geometrical and material parameters with lasing threshold. For these multiple-quantum-well nanolasers, it is found that low threshold is closely linked to longer lasing wavelength caused by losses in the core, providing a route to optimized future low-threshold devices. A best-in-group room temperature lasing threshold of ∼43 μJ cm under pulsed excitation was found, and overall device yields in excess of 50% are measured, demonstrating a promising future for the nanolaser architecture.

摘要

基于自下而上 III-V 材料的单根纳米线激光器已被证明在室温下具有近红外激光发射特性,因此非常适合用作纳米级、与硅兼容的相干光源。虽然激光行为具有可重复性,但是由于使用自下而上的生长技术,衬底上的生长条件会出现微小变化,从而通过几何或材料不均匀性引入线间无序。纳米激光器严重依赖于高质量的材料和严格的尺寸公差,因此,激光阈值不仅对这种非均匀性敏感,而且还是其敏感的探测探针。我们提出了一种全光学表征技术,并结合统计分析,将几何和材料参数与激光阈值相关联。对于这些多量子阱纳米激光器,发现低阈值与由于核心损耗导致的较长激光波长密切相关,这为未来优化低阈值器件提供了一种途径。在脉冲激发下,我们发现最佳群组的室温激光阈值约为 43 μJ cm,并且测量到超过 50%的整体器件产量,这表明这种纳米激光结构具有广阔的应用前景。

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