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Collisional dissipation of the laser-induced alignment of ethane gas: A requantized classical model

机译:激光诱导的乙烷气体对准的碰撞耗散:一种预先用化的经典模型

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摘要

We present the first theoretical study of collisional dissipation of the alignment of a symmetrictop molecule (ethane gas) impulsively induced by a linearly polarized non-resonant laser field. For this, Classical Molecular Dynamics Simulations (CMDSs) are carried out for an ensemble of C2H6 molecules based on knowledge of the laser-pulse characteristics and on an input intermolecular potential. These provide, for a given gas pressure and initial temperature, the orientations of all molecules at all times from which the alignment factor is directly obtained. Comparisons with measurements show that these CMDSs well predict the permanent alignment induced by the laser pulse and its decay with time but, as expected, fail in generating alignment revivals. However, it is shown that introducing a simple requantization procedure in the CMDS "creates" these revivals and that their predicted dissipation decay agrees very well with measured values. The calculations also confirm that, as for linear molecules, the permanent alignment of ethane decays more slowly than the transient revivals. The influence of the intermolecular potential is studied as well as that of the degree of freedom associated with the molecular rotation around the symmetry axis. This reveals that ethane practically behaves as a linear molecule because the intermolecular potential is only weakly sensitive to rotation around the C-C axis. Published by AIP Publishing.
机译:我们介绍了通过线性偏振的非谐振激光场冲动脉冲诱导的对称诱导的对称分子(乙烷气)的对准的碰撞耗散的第一理论研究。为此,基于激光脉冲特性的知识和输入分子间电位,对C2H6分子的集合进行经典分子动力学模拟(CMDS)。对于给定的气体压力和初始温度,这些提供了所有分子的取向,从中直接获得取向因子。测量的比较表明,这些CMDSSS很好地预测激光脉冲引起的永久对准及其衰减随着时间的推移,而是如预期的那样,在产生对准反射器时失败。但是,表明,在CMDS“创造”这些反振中,引入简单的铭记过程,并且它们的预测耗散衰减与测量值非常吻合。该计算还证实,即为线性分子,乙烷的永久对准比瞬态反射物更慢。研究了分子间电位的影响以及与对称轴周围的分子旋转相关的自由度的影响。这表明,埃烷实际上表现为线性分子,因为分子间电位仅对C-C轴线的旋转弱敏感。通过AIP发布发布。

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  • 来源
    《The Journal of Chemical Physics》 |2018年第15期|共7页
  • 作者单位

    PSL Res Univ Ecole Normale Super Lab Meteorol Dynam IPSL CNRS Ecole Polytech Sorbonne Univ F-91120 Palaiseau France;

    Univ Paris Sud Univ Paris Saclay Inst Sci Mol Orsay CNRS F-91405 Orsay France;

    Univ Bourgogne Franche Comte CNRS UMR 6303 Lab Interdisciplinaire Carrot Bourgogne ICB 9 Ave A Savary BP 47 870 F-21078 Dijon France;

    Univ Bourgogne Franche Comte CNRS UMR 6303 Lab Interdisciplinaire Carrot Bourgogne ICB 9 Ave A Savary BP 47 870 F-21078 Dijon France;

    Univ Bourgogne Franche Comte CNRS UMR 6303 Lab Interdisciplinaire Carrot Bourgogne ICB 9 Ave A Savary BP 47 870 F-21078 Dijon France;

    Univ Bourgogne Franche Comte CNRS UMR 6303 Lab Interdisciplinaire Carrot Bourgogne ICB 9 Ave A Savary BP 47 870 F-21078 Dijon France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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