等离子体半导体激光器的波前工程

N. Yu, R. Blanchard, Jonathan A. Fan, Qi Jie Wang, M. Kats, F. Capasso
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引用次数: 0

摘要

等离子体动力学涉及操纵表面等离子体(SPs),这是金属表面电子与电磁场相互作用的集体振荡。等离子体结构提供了紧凑和集成的光学处理,其中平面金属结构可以在亚波长水平上在二维上操纵SPs的振幅和相位。通过在有源光学器件上集成等离子体结构,人们可以设计和制造具有小尺寸和近场和/或远场特殊光束轮廓的器件。这次演讲总结了我们最近在半导体激光器的集成等离子体准直器、分束器和偏振器方面的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wavefront engineering of semiconductor lasers using plasmonics
Plasmonics involves manipulation of surface plasmons (SPs), which are collective oscillations of surface electrons in metal interacting with an electromagnetic field. Plasmonic structures provide compact and integrated optical processing, where planar metallic structures can be used to manipulate the amplitude and phase of SPs in two dimensions at the subwavelength level. By integrating plasmonic structures on active optical devices, one can engineer and fabricate devices with small footprints and special beam profiles in the near-field and/or in the far-field. This talk summarizes our recent work on building integrated plasmonic collimators, beam splitters, and polarizers for semiconductor lasers.
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