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首页> 外文期刊>The Journal of Chemical Physics >Ultrafast proton migration and Coulomb explosion of methyl chloride in intense laser fields
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Ultrafast proton migration and Coulomb explosion of methyl chloride in intense laser fields

机译:超超速质子迁移和Coulomb氯化物在激烈激光场中的氯化物

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摘要

We investigated the ultrafast proton migration and the Coulomb explosion (CE) dynamics of methyl chloride (CH3Cl) in intense femtosecond laser fields at thewavelengths of 800 nm (5.5 x 10(14) W/cm(2)) and 400 nm (4 x 10(14) W/cm(2)), respectively. Various fragment channels from molecular dication and trication were observed by coincidence momentum imaging through the measurement of their kinetic energy releases (KERs). The proton migration from different charged parent ions was analyzed from the obtained KER distributions. For the direct CE channel of CH3+ + Cl+ and CH3+ + Cl-2(+), the contribution of multiply excited electronic states and multicharged states is identified. In addition, the measurements of relative yields of the fragmentation channel at different laser wavelengths provide a selective control of proton migration for CH3Cl molecules in intense laser fields. Published by AIP Publishing.
机译:我们在800nm(5.5×10(14)w / cm(2))和400nm(4 x)的波长的强烈飞秒激光场中,在强烈的飞秒激光场中调查了甲基氯(Ch3cl)的库仑爆炸(Ce)动态。(4 x 分别为10(14)厘米/厘米))。 通过通过测量其动能释放(KERS),观察来自分子解毒和分子的各种片段信道。 从所获得的Ker分布分析来自不同电荷母离子的质子迁移。 对于CH3 + + CL +和CH3 + + CL-2(+)的直接CE通道,鉴定了乘法激发电子状态和多晶态的贡献。 另外,不同激光波长的碎片通道的相对产量的测量提供了激光激光场中的CH3CL分子的质子迁移的选择性控制。 通过AIP发布发布。

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