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亚波长等离子体激光从具有银纳米腔的半导体纳米盘中发射。

Subwavelength plasmonic lasing from a semiconductor nanodisk with silver nanopan cavity.

机构信息

Department of Physics, Korea University, Seoul 136-701, Korea.

出版信息

Nano Lett. 2010 Sep 8;10(9):3679-83. doi: 10.1021/nl1021706.

Abstract

We report the experimental demonstration of an optically pumped silver-nanopan plasmonic laser with a subwavelength mode volume of 0.56(lambda/2n)(3). The lasing mode is clearly identified as a whispering-gallery plasmonic mode confined at the bottom of the silver nanopan from measurements of the spectrum, mode image, and polarization state, as well as agreement with numerical simulations. In addition, the significant temperature-dependent lasing threshold of the plasmonic mode contrasts and distinguishes them from optical modes. Our demonstration and understanding of these subwavelength plasmonic lasers represent a significant step toward faster, smaller coherent light sources.

摘要

我们报告了一种光泵浦银纳米颗粒等离子体激光的实验演示,其亚波长模式体积为 0.56(lambda/2n)(3)。从光谱、模式图像和偏振态的测量以及与数值模拟的一致性,可以清楚地识别出激光模式是限制在银纳米盘底部的 whispering-gallery 等离子体模式。此外,等离子体模式的显著温度相关激光阈值与光学模式形成对比,并将它们区分开来。我们对这些亚波长等离子体激光的演示和理解是朝着更快、更小的相干光源迈出的重要一步。

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