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首页> 外文期刊>Journal of physical chemistry letters >Quantum Design for Ultrafast Probing of Molecular Chirality through Enantiomer-Specific Coherent π-Electron Angular Momentum
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Quantum Design for Ultrafast Probing of Molecular Chirality through Enantiomer-Specific Coherent π-Electron Angular Momentum

机译:通过对映体特异性相干π-电子的超快探测分子胆度的量子设计

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摘要

Probing molecular chirality, right-handed or left-handed chiral molecules, is one of the central issues in chemistry and biochemistry. The conventional theory of optical activity measurements such as circular dichroism has been derived in the second-order processes involving electric and magnetic dipole moments, and the signals are very weak. We propose an efficient enantiomer-probing scenario for chiral aromatic ring molecules based on photoinduced coherent π-electron rotations. In our model, the resultant laser-induced currents themselves produce a strong magnetic field. The principle for probing molecular chirality is a utilization of dynamic Stark effects of two electronic excited states. These electronic states subjected to strong nonresonant linearly polarized UV lasers become degenerate to create enantiomer-specific electronic angular momentum. A pair of enantiomers of phenylalanine was taken as an example. Enantiomer-specific coherent magnetic fluxes on the order of a few teslas can be generated in several tens of femtoseconds. The direct detection of strong coherent magnetic fluxes could be carried out by time-resolved magnetic force microscopy experiments. The results provide important implications for the measurement of effective probing of chiral aromatic molecules.
机译:探测分子手性,右手或左手手性分子,是化学和生物化学中的核心问题之一。诸如圆形二色性的传统光学活性测量理论已经以涉及电和磁性偶极矩的二阶工艺推导出来,并且信号非常弱。我们提出了一种基于光致相干π-电子旋转的手性芳环分子的高效对映体探测场景。在我们的模型中,所得到的激光诱导的电流本身产生强磁场。探测分子手性的原理是两个电子兴奋状态的动态缺点效应的利用。这些经受强烈的非族聚酯线性偏振的UV激光激光器的这些电子态变得退化以产生特定于对映体的电子角动量。将苯丙氨酸的一对对映体作为一个例子。在几十艘Femtoseconds中可以产生大约几个特性的对映体特异性相干磁通量。可以通过时间分辨的磁力显微镜实验进行强相相干磁通量的直接检测。结果为测量手性芳族分子的测量提供了重要意义。

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  • 作者单位

    Atomic Molecular and Optical Physics Research Group Advanced Institute of Materials Science Ton Duc Thang University Ho Chi Minh City Vietnam;

    Dharma College Dongguk University;

    Department of Applied Chemistry Institute of Molecular Science and Center for Interdisciplinary Molecular Science National Chiao-Tung University;

    Department of Applied Chemistry Institute of Molecular Science and Center for Interdisciplinary Molecular Science National Chiao-Tung University;

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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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