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Phonon-assisted secondary emission from a semiconductor quantum dot in the regime of vibrational resonance

机译:在振动共振的状态下,来自半导体量子点的声子辅助二次发射

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We develop a low-temperature theory of the resonant Raman scattering from a semiconductor quantum dot, whose electronic subsystem is resonant with the confined longitudinal-optical (LO) phonon modes. Our theory employs a generalized model for the quantum dot's energy spectrum renormalization, which is induced by the polar electron-phonon interaction. The model takes into account the degeneration of electronic states and allows for arbitrary LO-phonon modes to be involved in the vibrational resonance. We solve the generalized master equation for the reduced density matrix, in order to derive an analytical expression for the differential cross section of the resonant Raman scattering from a single quantum dot.
机译:我们开发从半导体量子点散射的谐振拉曼散射的低温理论,其电子子系统与限制纵向光学(LO)声子模式谐振。我们的理论采用广义模型用于量子点的能谱重整化,其由极性电子 - 声子相互作用引起的。该模型考虑了电子状态的退化,并允许任意LO-Phonon模式参与振动共振。我们解决了降低密度矩阵的广义主级方程,以从单个量子点散射谐振拉曼散射的差分横截面的分析表达。

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