Room-temperature photonic crystal nanocavity light emitting diodes based on Ge self-assembled quantum dots

Xuejun Xu, T. Maruizumi, Y. Shiraki
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Abstract

Current-injected light emitting diodes (LEDs) based on Ge self-assembled quantum dots embedded in photonic crystal (PhC) nanocavities are demonstrated by using a lateral PIN diode. Strong resonant electroluminescence (EL) is obtained at room-temperature when the injected current is larger than 50 μA. Sharp resonant peaks corresponding to the PhC cavity modes, with Q-factor larger than 800, are observed in the EL spectrum. The current dependence of the light emission properties is also discussed. By collecting the light emission through a single-mode fiber, we measure the output power of the LED to be about 6 pW under 3 mA injected current.
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基于锗自组装量子点的室温光子晶体纳米腔发光二极管
利用横向PIN二极管,实现了基于Ge自组装量子点嵌入光子晶体纳米腔的电流注入发光二极管(led)。当注入电流大于50 μA时,在室温下获得了强谐振电致发光(EL)。在EL光谱中观察到与PhC腔模式对应的尖锐共振峰,其q因子大于800。本文还讨论了光发射特性的电流依赖性。通过单模光纤采集光发射,在注入电流为3 mA的情况下,我们测量到LED的输出功率约为6 pW。
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