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利用外延生长的银膜制作的等离子体纳米激光器。

Plasmonic nanolaser using epitaxially grown silver film.

机构信息

Department of Physics, National Tsing-Hua University, Hsinchu 30013, Taiwan.

出版信息

Science. 2012 Jul 27;337(6093):450-3. doi: 10.1126/science.1223504.

Abstract

A nanolaser is a key component for on-chip optical communications and computing systems. Here, we report on the low-threshold, continuous-wave operation of a subdiffraction nanolaser based on surface plasmon amplification by stimulated emission of radiation. The plasmonic nanocavity is formed between an atomically smooth epitaxial silver film and a single optically pumped nanorod consisting of an epitaxial gallium nitride shell and an indium gallium nitride core acting as gain medium. The atomic smoothness of the metallic film is crucial for reducing the modal volume and plasmonic losses. Bimodal lasing with similar pumping thresholds was experimentally observed, and polarization properties of the two modes were used to unambiguously identify them with theoretically predicted modes. The all-epitaxial approach opens a scalable platform for low-loss, active nanoplasmonics.

摘要

纳米激光器是片上光通信和计算系统的关键组成部分。在这里,我们报告了基于受激辐射的表面等离激元放大的亚衍射纳米激光器的低阈值、连续波运行。等离子体纳米腔由原子平滑的外延银膜和单个光学泵浦的纳米棒组成,纳米棒由外延氮化镓壳和作为增益介质的铟镓氮化物芯组成。金属膜的原子平滑度对于减小模式体积和等离子体损耗至关重要。实验观察到双模态激光,并且两个模式的偏振特性被用于用理论预测的模式来明确识别它们。这种全外延方法为低损耗、有源纳米等离激子学开辟了一个可扩展的平台。

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