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Polariton relaxation in semiconductor microcavities: Efficiency of electron-polariton scattering

机译:半导体微腔中的极化子弛豫:电子极化子散射的效率

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摘要

We report on the experimental study of polariton relaxation in the presence of a photo-injected electron gas. The population along the polariton branches is measured for various excitation conditions through angle resolved photoluminescence. The electron gas is shown to induce a redistribution of the population along the lower polariton branch with a strong population increase close to the center of the Brillouin zone. However, even in the presence of electrons, polariton-polariton scattering is shown to remain the most efficient relaxation process. We analyze why electron-polariton scattering is not as efficient in the present microcavity structure as theoretically predicted.
机译:我们报告了在存在光注入电子气的情况下极化子弛豫的实验研究。通过角度分辨光致发光测量了各种激发条件下沿极化子分支的分布。示出了电子气在较低的极化子分支上引起了种群的重新分布,并且在靠近布里渊区的中心处有大量的种群增加。然而,即使在电子存在下,极化子-极化子散射仍显示为最有效的弛豫过程。我们分析了为什么电子极化子散射在当前的微腔结构中不如理论上预测的那样有效。

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