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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Laser-induced multiphoton dissociation branching ratios for H2+ and D2+
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Laser-induced multiphoton dissociation branching ratios for H2+ and D2+

机译:激光诱导的H2 +和D2 +的多光子解离支化比

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摘要

The multiphoton dissociation branching ratios for H2+ and D2+ as a function of laser peak intensity and pulselength are investigated by solving the time-dependent Schrodinger equation in the Born-Oppenheimer approxi-mation, neglecting nuclear rotation. An 800 nm laser pulse with peak intensities from 8 X 109 W/cm2 to1014 W/cm2 and pulse lengths from 5 to 7.5 fs is used. We also investigate the viability of identifying zero-,one-, two-, and three-photon processes based only on the nuclear kinetic energy release spectrum, and checkthese identifications with a rigorous Floquet-like method.
机译:通过求解Born-Oppenheimer近似中的时间相关Schrodinger方程,忽略核旋转,研究了H2 +和D2 +的多光子解离支化比率与激光峰值强度和脉冲长度的关系。使用800 nm激光脉冲,其峰值强度为8 X 109 W / cm2至1014 W / cm2,脉冲长度为5至7.5 fs。我们还研究仅基于核动能释放谱确定零,一,二和三光子过程的可行性,并使用严格的Floquet-like方法检查这些鉴定。

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