Tutunnikov Ilia, Gershnabel Erez, Gold Shachar, Averbukh Ilya Sh
Department of Chemical and Biological Physics, Weizmann Institute of Science , Rehovot 7610001, Israel.
J Phys Chem Lett. 2018 Mar 1;9(5):1105-1111. doi: 10.1021/acs.jpclett.7b03416. Epub 2018 Feb 19.
We explore a pure optical method for enantioselective orientation of chiral molecules by means of laser fields with twisted polarization. Several field implementations are considered, including a pair of delayed, cross-polarized laser pulses, an optical centrifuge, and polarization-shaped pulses. We show that these schemes lead to out-of-phase time-dependent dipole signals for different enantiomers, and we also predict a substantial permanent molecular orientation persisting long after the laser fields are over. The underlying classical orientation mechanism common to all of these fields is discussed, and its operation is demonstrated for a range of chiral molecules of various complexity: hydrogen thioperoxide (HSOH), propylene oxide (CHCHCHO), and ethyl oxirane (CHCHCHCHO). The presented results demonstrate generality, versatility, and robustness of this optical method for manipulating molecular enantiomers in the gas phase.
我们探索了一种通过具有扭曲偏振的激光场对手性分子进行对映选择性取向的纯光学方法。考虑了几种场的实现方式,包括一对延迟的、交叉偏振的激光脉冲、光学离心机和偏振整形脉冲。我们表明,这些方案会导致不同对映体产生异相的随时间变化的偶极信号,并且我们还预测在激光场结束后很长时间内会存在大量的永久分子取向。讨论了所有这些场共有的潜在经典取向机制,并针对一系列具有不同复杂性的手性分子展示了其操作:硫代过氧化氢(HSOH)、环氧丙烷(CHCHCHO)和乙基环氧乙烷(CHCHCHCHO)。所呈现的结果证明了这种用于在气相中操纵分子对映体的光学方法的通用性、多功能性和稳健性。