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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Intersubband laser coupled three-level asymmetric quantum wells: new dynamics of quantum interference
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Intersubband laser coupled three-level asymmetric quantum wells: new dynamics of quantum interference

机译:子带间激光耦合三能级不对称量子阱:量子干涉的新动力学

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The improved density-functional theory is employed to obtain the eigenstates of electrons in an asymmetric quantum well. On the basis of calculated eigenstates, the semiconductor Bloch equations are used to calculate the transient density matrix when a pulsed intersubband laser coupling is applied to the system. The new dynamics of the individual absorption peaks is analyzed for the first time by use of a self-consistent-field theory. Based on this, the time-averaged optical spectrum is calculated to show the coherent-transition-induced quantum interference in the system. The new phenomena of probe-field amplification is observed, and the threshold laser intensity for observing it is given. (C) 1998 Optical Society of America [S0740-3224(98)00105-2]. [References: 23]
机译:改进的密度泛函理论用于获得非对称量子阱中电子的本征态。基于计算的本征态,当将脉冲子带间激光耦合应用于系统时,可以使用半导体Bloch方程来计算瞬态密度矩阵。首次使用自洽场理论分析了各个吸收峰的新动力学。基于此,计算时间平均光谱以显示系统中相干跃迁引起的量子干涉。观察到了新的探测场放大现象,并给出了观察它的阈值激光强度。 (C)1998年美国眼镜学会[S0740-3224(98)00105-2]。 [参考:23]

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