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Analysis of adiabatic passage by light-induced potentials with chirped laser pulses in three- and four-level diatomic systems

机译:三能级和四能级双原子体系中chi激光脉冲的光诱导势分析绝热通道

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This paper describes an investigation into the process of adiabatic passage by light-induced potentials (APLIP), which was previously suggested as a method for employing two strong picosecond laser pulses to transfer the population between two electronic states. We have extended earlier numerical studies in order to assess the feasibility of an experimental implementation of the APLIP concept. APLIP has been modeled in a three-level model system based on Na-2 with chirped pulses, using laser parameters available from a typical chirped pulse amplified Ti:sapphire laser. The model showed that the APLIP process remains essentially unchanged for chirped pulses of equal magnitude and the opposite, or equal and positive sign of chirp as compared to the transform-limited case. We also examined the case of additional electronic states by introduction of a fourth state that lies close to the "target," i.e., final, state. The investigation showed that there are circumstances in which a significant fraction of the population gets transferred to this state which will disrupt the APLIP process. However, by switching to this fourth state as the target state in an experiment, good transfer efficiency is recovered. The results of the extension of the original APLIP modeling to chirped pulses and additional electronic states indicate that an APLIP experimental realization should be feasible in Na-2. (c) 2006 American Institute of Physics.
机译:本文介绍了对光感应电势(APLIP)绝热通过过程的研究,该技术先前被建议作为使用两个皮秒强激光脉冲在两个电子状态之间转移种群的方法。为了评估APLIP概念实验性实施的可行性,我们扩展了较早的数值研究。已使用典型been脉冲放大的Ti:蓝宝石激光器提供的激光参数,在基于Na-2和chi脉冲的三级模型系统中对APLIP进行了建模。该模型表明,与变换受限的情况相比,对于幅度相同的and脉冲,以及the的符号相反,相等或正号,APLIP过程基本上保持不变。我们还通过引入接近“目标”即最终状态的第四状态,研究了附加电子状态的情况。调查显示,在某些情况下,很大一部分人口被转移到该州,这将破坏APLIP流程。然而,通过在实验中切换到该第四状态作为目标状态,恢复了良好的转印效率。将原始APLIP模型扩展到chi脉冲和其他电子状态的结果表明,在Na-2中APLIP实验实现应该是可行的。 (c)2006年美国物理研究所。

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