Single quantum dot laser using photonic crystal nanocavity

M. Nomura, S. Iwamoto, Y. Arakawa
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Abstract

We demonstrate laser oscillation in InAs/GaAs single quantum dot (SQD) and photonic crystal nanocavity coupled systems. The coupling SQD provides most of the gain and distinct SQD feature is observed in the photon statistics. Depending on the light-matter coupling strength, laser oscillation starts in the weak- or strong-coupling regime. It is significant that the polariton doublet is still observed at the threshold pump power in the strongly coupled system. This fact indicates that the coherent exchange of quanta between the SQD and the cavity is still sustained under laser oscillation in the intermediate state.
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利用光子晶体纳米腔的单量子点激光器
研究了InAs/GaAs单量子点(SQD)和光子晶体纳米腔耦合系统中的激光振荡。耦合SQD提供了大部分增益,并且在光子统计中观察到明显的SQD特征。根据光-物质耦合强度的不同,激光振荡开始于弱耦合或强耦合状态。在强耦合系统中,在阈值泵浦功率下仍能观察到极化子双重态,这是很有意义的。这一事实表明,在激光振荡的中间状态下,SQD和腔之间的相干量子交换仍然持续。
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