扭曲极化太赫兹脉冲诱导手性分子的对映选择性取向

I. Tutunnikov, Long Xu, R. Field, K. Nelson, Y. Prior, I. Averbukh
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引用次数: 10

摘要

手性和手性分子是现代化学和生化工业的关键要素。手性对映体的单独寻址和最终分离一直是分子物理和化学中一个重要的难以捉摸的任务,多年来已经引入了各种方法来实现这一目标。在这里,我们从理论上证明了一对交叉极化太赫兹脉冲通过它们的永久偶极矩与手性分子相互作用,诱导这些分子的对手性选择取向。这种取向持续了很长时间,超过太赫兹脉冲的持续时间几个数量级,并研究了它与温度和脉冲参数的关系。这种持续的取向可能会增强分子在非均匀电磁场中的偏转,从而可能导致可行的分离技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enantioselective orientation of chiral molecules induced by terahertz pulses with twisted polarization
Chirality and chiral molecules are key elements in modern chemical and biochemical industries. Individual addressing, and the eventual separation of chiral enantiomers has been and still is an important elusive task in molecular physics and chemistry, and a variety of methods has been introduced over the years to achieve this goal. Here, we theoretically demonstrate that a pair of cross-polarized THz pulses interacting with chiral molecules through their permanent dipole moments induces an enantioselective orientation of these molecules. This orientation persists for a long time, exceeding the duration of the THz pulses by several orders of magnitude, and its dependency on temperature and pulses' parameters is investigated. The persistent orientation may enhance the deflection of the molecules in inhomogeneous electromagnetic fields, potentially leading to viable separation techniques.
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