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Optimal control on multi-photon ionization dynamics of small alkali aggregates

机译:小碱聚集体多光子电离动力学的最佳控制

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We have performed transient multi-photon ionization experiments on small alkali clusters of different size in order to probe their wave packet dynamics, structural reorientations, charge transfers and dissociative events in different vibrationally excited electronic states including their ground state. The observed processes were highly dependent on the irradiated pulse parameters like wavelength range or its phase and amplitude; an emphasis to employ a feedback control system for generating the optimum pulse shapes. Their spectral and temporal behavior reflects interesting properties about the investigated system and the irradiated photo-chemical process. Firstly, we present the vibrational dynamics of bound electronically excited states of alkali dimers and trimers. The scheme for observing the wave packet dynamics in the electronic ground state using stimulated Raman-pumping is shown. Since the employed pulse parameters significantly influence the efficiency of the irradiated dynamic pathways photo-induced ionization experiments were carried out. The controllability of 3-photon ionization pathways is investigated on the model-like systems NaK and K_2. A closed learning loop for adaptive feedback control is used to find the optimal fs pulse shape. Sinusoidal parameterizations of the spectral phase modulation are investigated in regard to the obtained optimal field. By reducing the number of parameters and thereby the complexity of the phase modulation, optimal pulse shapes can be generated that carry fingerprints of the molecule's dynamical properties. This enables to find "understandable" optimal pulse forms and offers the possibility to gain insight into the photo-induced control process. Characteristic motions of the involved wave packets are proposed to explain the optimized dynamic dissociation pathways.
机译:我们在不同尺寸的小碱簇上进行了瞬时多光子电离实验,以便在不同振动激励的电子状态下探测其波浪分组动态,结构性重点,电荷转移和解离事件,包括其基地。观察到的过程高度依赖于辐照脉冲参数,如波长范围或其相位和幅度;强调采用反馈控制系统,用于产生最佳脉冲形状。它们的光谱和时间行为反映了关于研究系统和辐照光学过程的有趣性质。首先,我们介绍了碱金属二聚体和三聚体的结合电子激发态的振动动力学。示出了使用刺激拉曼泵浦观察电子接地状态中的波分组动力学的方案。由于采用的脉冲参数显着影响照射动态途径的效率,进行了光诱导的电离实验。研究了3-光子电离途径的可控性在类似于模型的系统NAK和K_2上。用于自适应反馈控制的闭合学习循环用于找到最佳FS脉冲形状。在获得的最佳场方面研究了光谱相调制的正弦参数化。通过减少参数的数量,从而可以产生最佳脉冲形状,以携带分子的动态特性的指纹。这使得能够找到“可以理解的”最佳脉冲形式,并提供对光引起的控制过程深入了解的可能性。提出了所涉及的波包的特征运动来解释优化的动态解离途径。

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