首页> 外文期刊>International Journal of Quantum Chemistry >Three-peak Autler-Townes splitting in the photoelectron spectrum of Li _2 molecules caused by femtosecond laser pulses
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Three-peak Autler-Townes splitting in the photoelectron spectrum of Li _2 molecules caused by femtosecond laser pulses

机译:飞秒激光脉冲引起的Li _2分子光电子能谱中的三峰Autler-Town分裂

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摘要

Three-peak Autler-Townes (A-T) splitting in the resonant multiphoton ionization photoelectron spectrum for a rotating Li_2 molecular system in femtosecond pulse laser fields is studied by using two-dimension time-dependent quantum wave packet method. The A-T splitting results from rapid Rabi oscillation caused by intense femtosecond laser pulses. Because of the effects of molecular rotation and alignment, the Rabi oscillation in the population distribution will be damped in a certain degree. The three-peak A-T splitting can only be observed for a strongly aligned molecule with rapid Rabi oscillation. The three-peak A-T splitting dynamics can be affected by intensity, duration, temporal profile of laser pulse, and initial molecular rotational temperature. The conditions to observe the A-T splitting are discussed in detail.
机译:利用二维随时间变化的量子波包方法,研究了飞秒脉冲激光场中旋转的Li_2分子系统在共振多光子电离光电子能谱中的三峰奥特勒镇(A-T)分裂。 A-T分裂是由强飞秒激光脉冲引起的快速Rabi振荡引起的。由于分子旋转和排列的影响,总体分布中的拉比振荡将在一定程度上得到衰减。仅在具有快速拉比振荡的强排列分子上才能观察到三峰A-T分裂。三峰A-T分裂动力学可能受到强度,持续时间,激光脉冲的时间分布以及初始分子旋转温度的影响。详细讨论了观察A-T分裂的条件。

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