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Enhancement of light emission in Bragg monolayer-thick quantum well structures

机译:布拉格单层厚量子阱结构中发光的增强

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摘要

Control over spontaneous emission rate is important for improving efficiency in different semiconductor applications including lasers, LEDs and photovoltaics. Usually, an emitter should be placed inside the cavity to increase the spontaneous emission rate, although it is technologically challenging. Here we experimentally demonstrate a phenomenon of super-radiance observed in a cavity-less periodic Bragg structure based on InAs monolayer-thick multiple quantum wells (MQW). The collective super-radiant mode shows enhanced emission rate for specific angles and frequencies. This behaviour correlates with the calculations demonstrating individual spots of the enhanced Purcell coefficient near the Bragg condition curve. This study provides a perspective for realization of surface emitting cavity-less lasers with distributed feedback.
机译:自发发射速率的控制对于提高不同半导体应用(包括激光器,LED和光伏电池)的效率非常重要。通常,应该在腔体内放置一个发射器以增加自发发射速率,尽管这在技术上具有挑战性。在这里,我们通过实验证明了在基于InAs单层厚多量子阱(MQW)的无腔周期布拉格结构中观察到的超辐射现象。集体超辐射模式显示出特定角度和频率的增强发射率。此行为与计算相关,该计算表明布拉格条件曲线附近的增强的赛尔系数的各个点。这项研究为实现具有分布式反馈的无表面发射无腔激光器提供了一个前景。

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