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Impact of biexcitons on the relaxation mechanisms of polaritons in III-nitride based multiple quantum well microcavities

机译:双激子对基于III族氮化物的多量子阱微腔中极化子弛豫机理的影响

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摘要

We report on the direct observation of biexcitons in a III nitride based multiple quantum well microcavity operating in the strong light-matter coupling regime by means of nonresonant continuous wave and time-resolved photoluminescence at low temperature. First, the biexciton dynamics is investigated for the bare active medium (multiple quantum wells alone) evidencing localization on potential fluctuations due to alloy disorder and thermalization between both localized and free excitonic and biexcitonic populations. Then, the role of biexcitons is considered for the full microcavity: in particular, we observe that for specific detunings the bottom of the lower polariton branch is directly fed by the radiative dissociation of either cavity biexcitons or excitons mediated by one LO-phonon. Accordingly, minimum polariton lasing thresholds are observed, when the bottom of the lower polariton branch corresponds in energy to the exciton or cavity biexciton first LO-phonon replica. This singular observation highlights the role of excitonic molecules in the polariton condensate formation process as being amore efficient relaxation channel when compared to the usually assumed acoustical phonon emission one.
机译:我们报告了在基于强氮化物的多量子阱微腔中,通过非共振连续波和低温下的时间分辨光致发光,在基于III氮化物的多量子阱微腔中对双激子的直接观察。首先,针对裸露的活性介质(仅具有多个量子阱),研究了双激子动力学,以证明由于合金无序以及局部和自由激子与双激子总体之间的热化而引起的潜在波动的局部化。然后,考虑了双激子在整个微腔中的作用:特别是,我们观察到,对于特定的失谐现象,下极化子分支的底部直接由一个LO声子介导的腔双激子或激子的辐射解离提供。因此,当下部极化子分支的底部能量对应于激子或腔双激子第一LO-声子副本时,观察到最小极化子激射阈值。与通常假定的声子声子发射相比,这种奇异的观察突出了激子分子在极化子冷凝物形成过程中的作用,是更有效的弛豫通道。

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