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Theory of torsional control for G(16)-type molecules

机译:G(16)型分子的扭转控制理论

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We introduce a four-dimensional quantum model for describing the torsional control with moderately strong, non-resonant laser pulses of G(16)-type molecules in the electronic ground state, based on the symmetry-adapted variational method. We define conditions for which lower-dimensional models, commonly used to simulate the strong-field control of molecular torsions, are reliable approximations to a four-dimensional treatment. In particular, we study the role of different types of rotational-torsional couplings-the field-free coupling and the field-induced coupling-and show that the conclusions recently drawn on the role of rotational-torsional couplings in the process of torsional alignment are not correct in general. Furthermore, we demonstrate how important an adequate description of the molecular polarizability is for reliably predicting the torsional alignment. Published by AIP Publishing.
机译:我们介绍了一种四维量子模型,用于基于对称性改变的分析方法描述具有中等强度的扭转控制,用于在电子接地状态下的G(16)型分子的中等强度,非共振激光脉冲。 我们定义了常用于模拟分子扭转的强场控制的低维模型的条件,是四维治疗的可靠近似。 特别是,我们研究不同类型的旋转耦合耦合的作用 - 无场耦合和现场诱导的耦合 - 并且表明最近绘制了扭转耦合在扭转对准过程中的作用的结论 一般不正确。 此外,我们证明了分子极化性的足够描述是如何可靠地预测扭转对准的重要性。 通过AIP发布发布。

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