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Theoretical shaping of femtosecond laser pulses for ultrafast molecular photo-dissociation with control techniques based on time-dependent density functional theory

机译:飞秒激光脉冲的理论整形,基于时变密度泛函理论的控制技术实现超快分子光解离

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摘要

The combination of time-dependent density functional theory and quantum optimal control formalism is used to optimize the shape of ultra-short laser pulses in order to achieve the photodissociation of the hydrogen molecule. The very short pulse durations used in this work (a few femtoseconds) do not allow for significant nuclear movement during irradiation, and thus the dissociation mechanism is sequential. During pulse irradiation, a large sudden momentum is communicated which can be understood in terms of population of excited, bound or unbound, dissociative electronic states. The target is defined in terms of the average opposing force during the action of the pulse, or equivalently, in terms of the final dissociative velocity.
机译:时变密度泛函理论和量子最优控制形式的结合被用来优化超短激光脉冲的形状,以实现氢分子的光离解。在这项工作中使用的非常短的脉冲持续时间(几飞秒)不允许在辐照期间发生明显的核运动,因此解离机制是连续的。在脉冲辐照期间,会传达出很大的突然动量,这可以从激发的,受约束的或未受约束的,解离的电子态的总体上理解。根据脉冲作用期间的平均反向力来定义目标,或者等效地根据最终解离速度来定义目标。

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