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利用双色场从圆二色性中解析对映体敏感性。

Disentangling enantiosensitivity from dichroism using bichromatic fields.

作者信息

Ordonez Andres F, Smirnova Olga

机构信息

Max-Born-Institut, 12489 Berlin, Germany.

ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, 08860 Barcelona, Spain.

出版信息

Phys Chem Chem Phys. 2022 Mar 23;24(12):7264-7273. doi: 10.1039/d1cp05833a.

Abstract

We discuss how tensorial observables, available in photoelectron angular distributions resulting from interaction between isotropic chiral samples and cross polarized -2 bichromatic fields, allow for chiral discrimination without chiral light and within the electric-dipole approximation. We extend the concept of chiral setup [A. F. Ordonez and O. Smirnova, , 2018, , 063428], which explains how chiral discrimination can be achieved in the absence of chiral light, to the case of tensorial observables. We derive selection rules for the enantiosensitivity and dichroism of the coefficients describing the photoelectron angular distribution valid for both weak and strong fields and for arbitrary -2 relative phase. Explicit expressions for simple perturbative cases are given. We find that, besides the known dichroic non-enantiosensitive [R. E. Goetz, C. P. Koch and L. Greenman, ., 2019, , 074106], and dichroic-and-enantiosensitive coefficients found recently [P. V. Demekhin, , 2019, , 063406], there are also enantiosensitive non-dichroic coefficients. These reveal the molecular enantiomer independently of the relative phase between the two colors and are therefore observable even in the absence of stabilization of the -2 relative phase.

摘要

我们讨论了在各向同性手性样品与交叉极化的双色场相互作用产生的光电子角分布中可用的张量可观测量,如何在不使用手性光且在电偶极近似范围内实现手性辨别。我们将手性设置的概念 [A. F. 奥尔多涅斯和 O. 斯米尔诺娃,,2018,,063428] 扩展到张量可观测量的情况,该概念解释了在没有手性光的情况下如何实现手性辨别。我们推导了描述光电子角分布的系数的对映体敏感性和二向色性的选择规则,这些规则对弱场和强场以及任意 -2 相对相位均有效。给出了简单微扰情况的显式表达式。我们发现,除了已知的非对映体敏感的二向色性 [R. E. 戈茨、C. P. 科赫和 L. 格林曼,,2019,,074106] 以及最近发现的对映体敏感且具有二向色性的系数 [P. V. 德梅欣,,2019,,063406] 之外,还存在对映体敏感的非二向色性系数。这些系数能够独立于两种颜色之间的相对相位揭示分子对映体,因此即使在 -2 相对相位不稳定的情况下也可观测到。

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