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Steering population flow in coherently driven lossy quantum ladders

机译:相干驱动的有损量子阶梯中的引导种群流动

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We present a detailed theory of a technique for the adiabatic control of the population flow through a preselected decaying excited level in a three-level ladder quantum system, as was experimentally demonstrated recently by Garcia-Fernandez [Phys. Rev. Lett. 95, 043001 (2005)]. Specifically, we consider a three-state excitation chain of bound states, 1-2-3, of successively increasing excitation energy, in which probability loss via fluorescence occurs from states 2 and 3. We describe a laser excitation scheme that can, by adjustment of laser parameters, alter at will the relative fraction of population that, starting from state 1, is ultimately lost through states 2 and 3. We present analytical results for the conditions under which quasiadiabatic passage can take place. (c) 2006 American Institute of Physics.
机译:我们提出了一种通过三能级梯形量子系统中的预选衰减激发能级对种群流量进行绝热控制的技术的详细理论,最近由Garcia-Fernandez [Phys。牧师95,043001(2005)]。具体而言,我们考虑了束缚态1-2-3的三态激发链,其激发能量连续增加,其中通过荧光发生的概率损失是从状态2和3发生的。我们描述了一种可以通过调整来实现的激光激发方案激光参数的变化,会随意改变从状态1开始最终通过状态2和3丢失的总体相对比例。我们给出了准绝热通过条件下的分析结果。 (c)2006年美国物理研究所。

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