光电倒转石墨烯中等离子体的放大和自发发射-超材料2015

A. F. Page, F. Ballout, O. Hess, J. Hamm
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引用次数: 0

摘要

石墨烯作为片状导体,支持表面等离子体模式,由于其电子结构的零带隙,可以通过电子/空穴对的产生或湮灭来吸收和重新发射。这就提出了一个问题,是否可以通过部分反转载流子系统来支持具有增益的等离子体激元。我们表明,通过计算这种倒置系统的精确复频率等离子体色散(CFPD),即使在有限散射率、有限温度和外部化学掺杂的情况下,等离子体也可以通过受激发射被放大。从这里开始,考虑到这些非平衡载流子分布,我们研究了通过等离子体通道的电子-空穴复合速率,发现它们比先前预测的要快5倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Amplification and spontaneous emission of plasmons in photo-inverted graphene — Metamaterials 2015
Graphene, as a sheet conductor, supports surface plasmon modes, which, due to the zero band gap of its electronic stucture, can be absorbed and re-emitted by the creation or anihilation of electron/hole pairs. This opens up the question, whether plasmons with gain can be supported by partially inverting the carrier system. We show that, by calculating the exact complex-frequency plasmon dispersion (CFPD) of such inverted systems, plasmons can be amplified by stimulated emission even in cases of finite scattering rates, finite temperatures, and extrinsic chemical doping. From here, given these non-equilibrium carrier distributions, we investigate the rates of electron-hole recombination via plasmonic channels and find they are a factor of 5 faster than previously predicted.
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