首页> 外文期刊>The Journal of Chemical Physics >PULSE LENGTH CONTROL OF NA-2(+) PHOTODISSOCIATION BY INTENSE FEMTOSECOND LASERS
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PULSE LENGTH CONTROL OF NA-2(+) PHOTODISSOCIATION BY INTENSE FEMTOSECOND LASERS

机译:强度飞秒激光控制NA-2(+)光解离的脉冲长度

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摘要

Fragmentation dynamics of the molecular ion Na-2(+) irradiated by an intense femtosecond pulse laser is studied using quantum wave packet propagations. It is demonstrated that the pulse duration (20-250 fs) can be used as a control parameter for both the total dissociation probability and the branching ratio between different dissociation channels. This pulse length effect is important when the duration of the pulse is shorter than the vibrational period of the molecular ion in the ground state. The effects of laser intensity (10(11)-3X10(12) W/cm(2)), wavelength (680-780 nm) and initial vibrational level on the dissociation dynamics are also studied. (C) 1996 American Institute of Physics. [References: 22]
机译:使用量子波包传播研究了强飞秒脉冲激光辐照的分子离子Na-2(+)的碎片动力学。结果表明,脉冲持续时间(20-250 fs)可用作总离解概率和不同离解通道之间分支比的控制参数。当脉冲的持续时间短于基态中分子离子的振动周期时,此脉冲长度效应很重要。还研究了激光强度(10(11)-3X10(12)W / cm(2)),波长(680-780 nm)和初始振动水平对解离动力学的影响。 (C)1996年美国物理研究所。 [参考:22]

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