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Influence of spatial degeneracy on rotational spectroscopy; Three-wave mixing and enantiomeric state separation of chiral molecules

机译:空间退化对旋转光谱的影响; 手性分子的三波混合和对映体分离

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Pulse flip angles are calculated for three-wave mixing, three-state cycles of chiral molecules to produce optimized free induction decay amplitudes proportional to the enantiomeric excess of a sample and to produce optimized degrees of state-specific enantiomeric separation. The calculations account for the spatial degeneracy of the levels involved and the resulting inhomogeneous distribution of transition dipole moments. Cycles of transitions that include R followed by Q followed by P branch transitions display only modest reductions of the calculated optimal signals compared to those calculated if every M component was optimally polarized. Transition cycles P-Q-R are only slightly worse, while the Q-Q-Q cycles are much worse, increasingly so, as the rotational total quantum number is increased. Published by AIP Publishing.
机译:计算脉冲翻转角度,用于三波混合,三态循环的手性分子,以产生与样品的对映体过量成比例的优化的游离感应衰减幅度,并产生优化的状态特异性对映体分离。 计算占所涉及的水平的空间退化和过渡偶极矩的不均匀分布。 与Q接下来的转换周期,然后是P分支转换,与计算出的计算出的最佳信号仅在每个M分量最佳极化时显示计算的最佳信号的适度减少。 过渡循环P-Q-R仅略差,而Q-Q-Q循环越来越差,随着旋转总量子数增加。 通过AIP发布发布。

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