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对手性和频产生的超快控制。

Ultrafast control over chiral sum-frequency generation.

作者信息

Vogwell Joshua, Rego Laura, Smirnova Olga, Ayuso David

机构信息

Department of Physics, Imperial College London, SW7 2AZ London, UK.

Universidad de Salamanca, 37008 Salamanca, Spain.

出版信息

Sci Adv. 2023 Aug 18;9(33):eadj1429. doi: 10.1126/sciadv.adj1429.

Abstract

We introduce an ultrafast all-optical approach for efficient chiral recognition that relies on the interference between two low-order nonlinear processes that are ubiquitous in nonlinear optics: sum-frequency generation and third-harmonic generation. In contrast to traditional sum-frequency generation, our approach encodes the medium's handedness in the intensity of the emitted harmonic signal, rather than in its phase, and it enables full control over the enantiosensitive response. We show how, by sculpting the sub-optical-cycle oscillations of the driving laser field, we can force one molecular enantiomer to emit bright light while its mirror twin remains dark, thus reaching the ultimate efficiency limit of chiral sensitivity via low-order nonlinear light-matter interactions. Our work paves the way for ultrafast and highly efficient imaging and control of the chiral electronic clouds of chiral molecules using lasers with moderate intensities, in all states of matter: from gases to liquids to solids, with molecular specificity and on ultrafast time scales.

摘要

我们介绍了一种用于高效手性识别的超快全光学方法,该方法依赖于非线性光学中普遍存在的两个低阶非线性过程之间的干涉:和频产生和三次谐波产生。与传统的和频产生不同,我们的方法将介质的手性编码在发射谐波信号的强度中,而不是其相位中,并且它能够对手性敏感响应进行完全控制。我们展示了如何通过塑造驱动激光场的亚光学周期振荡,迫使一种分子对映体发出强光,而其镜像对映体保持黑暗,从而通过低阶非线性光与物质相互作用达到手性灵敏度的极限效率。我们的工作为在所有物质状态下(从气体到液体再到固体),以中等强度的激光对手性分子的手性电子云进行超快且高效的成像和控制铺平了道路,具有分子特异性且在超快时间尺度上。

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