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Coherent control of quantum states by single frequency-chirped laser pulses and electromagnetically self-induced transparency

机译:单频chi激光脉冲和电磁自感应透明对量子态的相干控制

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This paper shows that a single laser pulse with a chirped frequency can generate trapped superposition of the ground states in the /spl Lambda/-atom when the width of the transform-limited laser pulse envelope frequency spectrum (without chirp) is smaller but the peak Rabi frequency of the pulse is larger than frequency interval between the two ground states of the /spl Lambda/-atom. This study also analyzes the propagation of the frequency-chirped laser pulse in a medium consisting of /spl Lambda/-atoms analytically and by exact numerical solution of coupled Bloch-Maxwell equations. The results show that there is nearly absorptionless propagation of the single frequency-chirped laser pulse on distances more than 40 times the pulse duration, when the formulated above conditions of negligible excitation of the /spl Lambda/-atom are fulfilled. The described effect of absorptionless propagation of the single frequency-chirped pulse is referred to as electromagnetically self-induced transparency.
机译:本文表明,当变换限制激光脉冲包络频率谱(不啁啾)的宽度较小时,具有啁啾频率的单个激光脉冲可以在/ SPL Lambda / -Atom中产生接地状态的捕获叠加。脉冲的Rabi频率大于/ SPL Lambda / -Atom的两个接地状态之间的频率间隔。该研究还分析了分析耦合的Bloch-maxwell方程的/ SPLλ/ -TOM组成的介质中的频率啁啾激光脉冲的传播。结果表明,当满足/ SPL Lambda / -TOM的可忽略激发的上述条件的制定的上述条件时,单频啁啾激光脉冲的距离几乎没有吸收传播超过40倍的距离。所述单频啁啾脉冲的吸收传播的描述效果被称为电磁自诱导的透明度。

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