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State filling in InAs quantum-dot laser structures

机译:InAs量子点激光器结构中的状态填充

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We have measured the passive modal absorption, modal gain, and spontaneous emission spectra of a quantum-dot system where the inhomogeneous broadening is sufficiently small so that the ground- and excited-state transitions can be spectrally resolved. Absorption by ground- and excited-state transitions is in the ratio 1:1.88 which is close to the ratio of 2 expected for dots with similar dimensions in two directions. The absorption cross section per dot is measured to be 1.1 × 10-14 cm2. Optical gain from the ground-state saturates with current at a maximum value of one third of that predicted from the measured absorption if the system is fully inverted. The measured population inversion factor spectrum shows that the carrier distributions cannot be described only by a single global Fermi distribution and that the system is not in overall equilibrium. However, using parameters obtained by fitting the absorption spectrum, we find that for these particular samples the inversion factor spectrum can be described by a possible model where the ground- and excited-state occupancies are each described by a Fermi distribution but with different quasi-Fermi energy separations. We speculate that photon mediation within the homogeneous linewidth could be one possible process which establishes quasi-equilibrium within each of the ground- and excited-state inhomogeneous distributions.
机译:我们已经测量了量子点系统的无源模态吸收,模态增益和自发发射光谱,该量子点系统的不均匀展宽足够小,因此可以通过光谱解析基态和激发态跃迁。基态和激发态跃迁的吸收比为1:1.88,与在两个方向上具有相似尺寸的点的预期比值2接近。每个点的吸收截面测得为1.1×10-14 cm2。如果系统完全倒置,则来自基态的光学增益将以电流饱和,最大值为从测量的吸收预测的电流的三分之一。测得的人口反演因子谱表明,不能仅通过单个全局费米分布来描述载流子分布,并且该系统未处于整体平衡状态。但是,使用通过拟合吸收光谱获得的参数,我们发现,对于这些特定样品,可以通过可能的模型来描述反演因子光谱,在该模型中,基态和激发态占有率分别由费米分布描述,但具有不同的准噪声。费米能量分离。我们推测,在均匀线宽内的光子介导可能是在每个基态和激发态不均匀分布内建立准平衡的可能过程。

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