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Multielectron dissociative ionization of methane and formaldehyde molecules with optimally tailored intense femtosecond laser pulses

机译:甲烷和甲醛分子的多电体解离电离,具有最佳定制的强烈飞秒激光脉冲

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The multielectron dissociative ionization of CH4 and CH2O molecules has been investigated using optimum convolution of different dual tailored short laser pulses. Based on three dimensional molecular dynamics simulations and TDDFT approach, the dissociation probability is enhanced by designing the dual chirped-chirped laser pulses and chirped-ordinary laser pulses for formaldehyde molecule. However, it is interesting to notice that the sensitivity of enhanced dissociation probability into different tailored laser pulses is not significant for methane molecule. In this presented modifications, time variation of bond length, velocity, time dependent electron localization function and evolution of the efficient occupation states are presented to analyze the time evolution of molecular dynamics. This work is proved to be a potential way to reduce the controlling costs with a currently available pulse shaping technology. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用不同双量身短的短激光脉冲的最佳卷积研究了CH4和CH 2 O分子的多电元分离电离。 基于三维分子动力学模拟和TDDFT方法,通过设计双啁啾啁啾激光脉冲和用于甲醛分子的啁啾普通激光脉冲来增强解离概率。 然而,有趣的是注意到增强的解离概率在不同的定制激光脉冲中的敏感性对于甲烷分子并不重要。 在这种呈现的修改中,提出了键合长度,速度,时间依赖性电子定位功能和有效占用状态的演化的时间变化,以分析分子动力学的时间演变。 事实证明,这项工作是通过目前可用的脉冲整形技术来降低控制成本的潜在方法。 (c)2017年Elsevier B.V.保留所有权利。

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