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用于检测稳健对映体敏感可观测量的手性拓扑光。

Chiral topological light for detection of robust enantiosensitive observables.

作者信息

Mayer Nicola, Ayuso David, Decleva Piero, Khokhlova Margarita, Pisanty Emilio, Ivanov Misha, Smirnova Olga

机构信息

Max-Born-Institut, Berlin, Germany.

Attosecond Quantum Physics Laboratory, Department of Physics, King's College London, London, UK.

出版信息

Nat Photonics. 2024;18(11):1155-1160. doi: 10.1038/s41566-024-01499-8. Epub 2024 Aug 13.

Abstract

The topological response of matter to electromagnetic fields is a highly demanded property in materials design and metrology due to its robustness against noise and decoherence, stimulating recent advances in ultrafast photonics. Embedding topological properties into the enantiosensitive optical response of chiral molecules could therefore enhance the efficiency and robustness of chiral optical discrimination. Here we achieve such a topological embedding by introducing the concept of chiral topological light-a light beam which displays chirality locally, with an azimuthal distribution of its handedness described globally by a topological charge. The topological charge is mapped onto the azimuthal intensity modulation of the non-linear optical response, where enantiosensitivity is encoded into its spatial rotation. The spatial rotation is robust against intensity fluctuations and imperfect local polarization states of the driving field. Our theoretical results show that chiral topological light enables detection of percentage-level enantiomeric excesses in randomly oriented mixtures of chiral molecules, opening a way to new, extremely sensitive and robust chiro-optical spectroscopies with attosecond time resolution.

摘要

由于物质对电磁场的拓扑响应具有抗噪声和退相干的稳健性,在材料设计和计量学中是一种迫切需要的特性,这推动了超快光子学的最新进展。因此,将拓扑特性嵌入到手性分子的对映体敏感光学响应中,可以提高手性光学识别的效率和稳健性。在这里,我们通过引入手性拓扑光的概念实现了这种拓扑嵌入,手性拓扑光是一种局部显示手性的光束,其手性的方位分布由拓扑电荷全局描述。拓扑电荷被映射到非线性光学响应的方位强度调制上,其中对映体敏感性被编码到其空间旋转中。这种空间旋转对驱动场的强度波动和不完美的局部偏振态具有稳健性。我们的理论结果表明,手性拓扑光能够检测手性分子随机取向混合物中百分比水平的对映体过量,为具有阿秒时间分辨率的新型、极其灵敏和稳健的手性光谱学开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aa5/11527792/e96db937b588/41566_2024_1499_Fig1_HTML.jpg

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