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飞秒双色激光场中 CO 分子的无场取向。

Field-free orientation of CO molecules by femtosecond two-color laser fields.

机构信息

J.R. Macdonald Laboratory, Physics Department, Kansas State University, Manhattan, Kansas 66506, USA.

出版信息

Phys Rev Lett. 2009 Oct 9;103(15):153002. doi: 10.1103/PhysRevLett.103.153002. Epub 2009 Oct 5.

Abstract

We report the first experimental observation of nonadiabatic field-free orientation of a heteronuclear diatomic molecule (CO) induced by an intense two-color (800 and 400 nm) femtosecond laser field. We monitor orientation by measuring fragment ion angular distributions after Coulomb explosion with an 800 nm pulse. The orientation of the molecules is controlled by the relative phase of the two-color field. The results are compared to quantum mechanical rigid rotor calculations. The demonstrated method can be applied to study molecular frame dynamics under field-free conditions in conjunction with a variety of spectroscopy methods, such as high-harmonic generation, electron diffraction, and molecular frame photoelectron emission.

摘要

我们报告了首例通过强双色(800nm 和 400nm)飞秒激光场诱导异核双原子分子(CO)非绝热无场取向的实验观察。我们通过用 800nm 脉冲测量库仑爆炸后的碎片离子角分布来监测取向。分子的取向由双色场的相对相位控制。结果与量子力学刚性转子计算进行了比较。所展示的方法可以与各种光谱方法(如高次谐波产生、电子衍射和分子框架光电子发射)结合使用,应用于无场条件下的分子框架动力学研究。

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