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Broadband Surface Plasmon Lasing in One-dimensional Metallic Gratings on Semiconductor

机译:半导体上的一维金属光栅中的宽带表面等离子激射

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摘要

We report surface plasmon (SP) lasing in metal/semiconductor nanostructures, where one-dimensional periodic silver slit gratings are placed on top of an InGaAsP layer. The SP nature of the lasing is confirmed from the emission wavelength governed by the grating period, polarization analysis, spatial coherence, and comparison with the linear transmission. The excellent performance of the device as an SP source is demonstrated by its tunable emission in the 400-nm-wide telecom wavelength band at room temperature. We show that the stimulated emission enhanced by the Purcell effect enables successful SP lasing at high energies above the gap energy of the gain. We also discuss the dependence of the lasing efficiency on temperature, grating dimension, and type of metal.
机译:我们报告了金属/半导体纳米结构中的表面等离激元(SP)激光,其中一维周期性银缝隙光栅放置在InGaAsP层的顶部。从受光栅周期,偏振分析,空间相干以及与线性透射比较的发射波长确定激光的SP性质。该器件作为SP源的出色性能通过其在室温下在400 nm宽的电信波长带中的可调发射得以证明。我们表明,通过赛尔效应增强的受激发射使成功的SP激光能够在高于增益的间隙能量的高能量下成功发射激光。我们还将讨论激光效率对温度,光栅尺寸和金属类型的依赖性。

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