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Electric deflection of rotating molecules

机译:旋转分子的电偏转

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We provide a theory of the deflection of polar and nonpolar rotating molecules by inhomogeneous static electric field. Rainbowlike features in the angular distribution of the scattered molecules are analyzed in detail. Furthermore, we demonstrate that one may efficiently control the deflection process with the help of short and strong femtosecond laser pulses. In particular, the deflection process may be turned off by a proper excitation, and the angular dispersion of the deflected molecules can be substantially reduced. We study the problem both classically and quantum mechanically, taking into account the effects of strong deflecting field on the molecular rotations. In both treatments we arrive at the same conclusions. The suggested control scheme paves the way for many applications involving molecular focusing, guiding, and trapping by inhomogeneous fields.
机译:我们提供了不均匀静电场对极性和非极性旋转分子的偏转的理论。详细分析了分散分子的角度分布中的虹状特征。此外,我们证明了借助短而强的飞秒激光脉冲可以有效地控制偏转过程。特别地,可以通过适当的激发来关闭偏转过程,并且可以大大减小偏转的分子的角分散。考虑到强偏转场对分子旋转的影响,我们经典地和量子地研究了该问题。在两种治疗中,我们得出相同的结论。建议的控制方案为涉及分子聚焦,引导和非均匀场捕获的许多应用铺平了道路。

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