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首页> 外文期刊>Physica status solidi, B. Basic research >How correlated Coulomb quantum kinetics affects the optical phase of four-wave-mixing signals
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How correlated Coulomb quantum kinetics affects the optical phase of four-wave-mixing signals

机译:相关的库仑量子动力学如何影响四波混合信号的光学相位

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摘要

The optical phase of four-wave-mixing (FWM) signals from a ZnSe single quantum well is analyzed experimentally and theoretically. The focus is on excitation conditions where the polarization state of the emitted light is dynamically changing rather than being fixed by selection rules, a case known to be sensitive to high-order Coulomb correlations. The phase is measured using an iterative procedure taking as input FWM signals with real-time resolution as well as frequency regime data. The results are compared with a microscopical density-matrix description using the dynamics controlled truncation (DCT) scheme. Mean-field Coulomb interactions, Pauli blocking and transitions to biexcitons and the two-pair scattering continuum are accounted for. Calculations in the coherent limit are able to reproduce the measured phases. The correlated two-pair scattering continuum is shown to have a significant impact on the phase. [References: 20]
机译:从实验和理论上分析了来自ZnSe单量子阱的四波混频(FWM)信号的光学相位。重点放在激发条件上,在该激发条件下,发射光的偏振状态动态变化,而不是由选择规则固定,这种情况已知对高阶库仑相关性敏感。使用迭代程序测量相位,将具有实时分辨率的FWM信号以及频率状态数据作为输入。将结果与使用动态控制截断(DCT)方案的微观密度矩阵描述进行比较。考虑了平均场库仑相互作用,保利(Pauli)阻滞和向双激子的跃迁以及两对散射连续体。相干极限中的计算能够重现所测量的相位。相关的两对散射连续体显示出对相位有重大影响。 [参考:20]

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