表面等离子体激光器:量子点

K. Ahmed
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引用次数: 0

摘要

一种表面等离子体激光器包括金属层、在金属层上给定的附加介质层和圆形结构段,在圆形结构段中产生低语显示模式,在该模式中,由于表面等离子体激元在与金属层沿圆形轴向的连接点上的混音而产生表面等离子体光,以及在附加介质层的圆形结构部分中形成的产生激光光的扭曲片。我们考虑一层薄薄的n型半导体夹在金属和p型半导体之间,p-n交点是正向单侧的。SPW的模式设计,沿着金属表面产生,延伸到p-n交叉点,在那里它激发电子开洞复合并得到强化。通过减小夹层厚度,可以使SPW激光器的光增益与二极管激光器的光增益几乎相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface Plasmon Lasers: Quantum Dot
A surface plasmon laser incorporates a metal layer, an additional medium layer given on the metal layer, and a round structure segment in which a murmuring exhibition mode is created in which surface plasmon light is produced because of surface plasmon reverberation on a connection point with the metal layer pivots along a circle, and a twisted piece framed to yield a piece of laser light created in the round structure part of the addition medium layer. We consider a thin layer of an n-type semiconductor sandwiched between a metal and a p-type semiconductor, and the p-n intersection is forward-one-sided. The mode design of the SPW, engendering along the metal surface, stretches out up to the p-n intersection, where it incites electron-opening recombination and gets intensified. The optical increase of the SPW laser can be made practically identical to that of a diode laser by lessening the thickness of the sandwich layer.
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