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Analysis of femtosecond quantum control mechanisms with colored double pulses

机译:飞秒彩色双脉冲量子控制机理分析

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Fitness landscapes based on a limited number of laser pulse shape parameters can elucidate reaction pathways and can help to find the underlying control mechanism of optimal pulses determined by adaptive femtosecond quantum control. In a first experiment, we employ colored double pulses and systematically scan both the temporal subpulse separation and the relative amplitude of the two subpulses to acquire fitness landscapes. Comparison with results obtained from a closed-loop experiment demonstrates the capability of fitness landscapes for the revelation of possible control mechanisms. In a second experiment, using transient absorption spectroscopy, we investigate and compare the dependence of the excitation efficiency of the solvated dye molecule 5,5(')-dichloro-11-diphenylamino-3,3(')-diethyl-10,12-ethylene thiatricarbocyanine perchlorate (IR140) on selected pulse shapes in two parametrizations. The results show that very different pulse profiles can be equivalently adequate to maximize a given control objective. Fitness landscapes thus provide valuable information about different pathways along which a molecular system can be controlled with shaped laser pulses.
机译:基于有限数量的激光脉冲形状参数的适应度景观可以阐明反应路径,并有助于找到由自适应飞秒量子控制确定的最佳脉冲的基本控制机制。在第一个实验中,我们使用彩色双脉冲并系统地扫描时间子脉冲间隔和两个子脉冲的相对幅度,以获取适合度景观。与从闭环实验中获得的结果进行比较,证明了适应性景观对于揭示可能的控制机制的能力。在第二个实验中,我们使用瞬态吸收光谱法研究并比较了溶剂化染料分子5,5(')-dichloro-11-diphenylamino-3,3(')-diethyl-10,12的激发效率的依赖性。 -在两个参数设置中选择的脉冲形状上的亚乙基硫杂草花青高氯酸盐(IR140)。结果表明,非常不同的脉冲轮廓可以等效地足以最大化给定的控制目标。因此,健身景观提供了有关不同路径的有价值的信息,沿着这些路径可以用成形的激光脉冲控制分子系统。

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