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Circular dichroism in ion yields employing femtosecond laser ionization-the role of laser pulse duration

机译:飞秒激光电离在离子产率中的圆二色性-激光脉冲持续时间的作用

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摘要

The circular dichroism (CD) induced by femtosecond laser pulse excitation of 3-methyl-cyclopentanone has been investigated by means of experiment and theory as a function of the laser pulse duration. In the experiment the CD in ion yields is measured by femtosecond laser ionization via a one-photon resonant excited state. In the theoretical part the CD is calculated by solving laser driven quantum electron dynamics for the same resonant excitation based on ab initio electronic structure calculations employing a complete description of the electric field-electric dipole and magnetic field-magnetic dipole interactions. Both the experimentally measured CD in ion yields and the calculated CD in excited state populations exhibit a marked increase of the CD for pulse duration increasing from 50 fs to about 200 fs. Beyond 200 fs pulse duration the CD levels off. The combination of experimental and theoretical evidences indicates that the CD decreases with increasing laser intensity connected to the increased coupling between the excited states.
机译:通过实验和理论研究了飞秒激光脉冲激发3-甲基-环戊酮引起的圆二色性(CD),它是激光脉冲持续时间的函数。在该实验中,通过单光子共振激发态通过飞秒激光电离来测量离子产率中的CD。在理论部分,通过对电场-电偶极和磁场-磁偶极相互作用的完整描述,基于从头算电子结构计算,通过求解相同共振激发的激光驱动量子电子动力学来计算CD。对于脉冲持续时间从50 fs增加到约200 fs,实验测量的离子产率CD和激发态总体中计算的CD都显示CD的显着增加。超过200 fs脉冲持续时间后,CD趋于平稳。实验和理论证据的结合表明CD随激光强度的增加而减小,这与激发态之间的耦合增加有关。

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