Current modulation of SPP nanolasers based on graphene-insulator-metal platform

T. Lu
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Abstract

In this report, we successfully demonstrated the room temperature operated SPP nanolaser on the graphene-insulator-metal (GIM) platform that can actively modulate the characteristics of SPP wave. The lasing threshold and emission peak of ZnO nanowire on aluminum with graphene were manipulated according to the amount of current injected to the graphene due to the nonreciprocal and thermal effect.
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基于石墨烯-绝缘体-金属平台的SPP纳米激光器电流调制
在本报告中,我们成功地在石墨烯-绝缘体-金属(GIM)平台上演示了室温操作的SPP纳米激光器,该激光器可以主动调制SPP波的特性。由于石墨烯的非互反效应和热效应,ZnO纳米线在石墨烯铝上的激光阈值和发射峰随注入石墨烯电流的大小而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Front Matter: Volume 11797 Mark Stockman Tribute Enhancement of optical nonlinearity and spontaneous emission in nano-engineered epsilon-near-zero materials Plasmonic metaplatforms for enhanced light control Excitonic semiconductors on plasmonic substrates: optical and electronic effects
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