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Field-free molecular alignment induced by elliptically polarized laser pulses: Noninvasive three-dimensional characterization

机译:椭圆偏振激光脉冲诱导的无场分子排列:无创三维表征

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摘要

An investigation of field-free molecular alignment produced by elliptically polarized laser pulses is reported. Experiments are conducted in CO2 at room temperature. A noninvasive all-optical technique, based on the cross defocusing of a probe pulse, is used to measure the alignment along two orthogonal directions which is sufficient to provide a three-dimensional characterization. The field-free molecular alignment produced by a laser of elliptical polarization is in good agreement in terms of amplitude and shape with theoretical predictions. It turns out to be almost equivalent to the superposition of the effects that one would obtain with two individual cross-polarized pulses. The investigation highlights notably the occurrence of field-free two-direction alignment alternation for a suitably chosen degree of ellipticity. The analogy between this specific ellipticity and the well-known "magic angle" used in time-resolved spectroscopy to prevent rotational contributions is discussed.
机译:报道了对由椭圆偏振激光脉冲产生的无场分子排列的研究。实验是在室温下于二氧化碳中进行的。基于探针脉冲的交叉散焦的非侵入性全光学技术用于测量沿两个正交方向的对准,这足以提供三维特征。椭圆偏振激光产生的无场分子排列在幅度和形状方面与理论预测非常吻合。事实证明,这几乎等于一个人用两个独立的交叉极化脉冲所获得的效果的叠加。调查亮点特别是无场的两方向对准交替为椭圆的适当选择的程度发生。讨论了这种特定的椭圆率与时间分辨光谱中用于防止旋转贡献的众所周知的“魔角”之间的类比。

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