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Selective photodissociation in diatomic molecules by dynamical Stark-shift control

机译:动态斯塔克位移控制在双原子分子中的选择性光解离

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Selective population transfer in electronic states of dissociative molecular systems is illustrated by adopting a control scheme based on Stark-chirped rapid adiabatic passage (SCRAP). In contrast to the discrete N-level system, dynamical Stark shift is induced in a more complex manner in the molecular electronic states. Wavepacket dynamics on the light-induced potentials, which are determined by the detuning of the pump pulse, can be controlled by additional Stark pulse in the SCRAP scheme. Complete population transfer can be achieved by either lowering the energy barrier along the adiabatic passage or placing the initial wavepacket on a well-defined dressed state suitable for the control. The determination of the pulse sequence is sufficient for controlling population transfer to the target state. (c) 2008 American Institute of Physics.
机译:通过采用基于Stark rp快速绝热通道(SCRAP)的控制方案,说明了在解离分子系统电子状态下的选择性种群转移。与离散的N能级系统相反,在分子电子态中以更复杂的方式诱发动态的Stark位移。在SCRAP方案中,可以通过附加的Stark脉冲来控制由泵浦脉冲的失谐确定的光感应电势上的波包动力学。可以通过降低绝热通道的能垒或将初始波包置于定义良好的适合控制的穿戴状态来实现完全的人口转移。脉冲序列的确定足以控制种群转移到目标状态。 (c)2008年美国物理研究所。

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