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Tilting light’s polarization plane to spatially separate the ultrafast nonlinear response of chiral molecules

Rego Laura et al · Wiley · 2023

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Distinguishing between the left- and right-handed versions of a chiral molecule (enantiomers) is vital, but also inherently difficult. Traditional optical methods using elliptically/circularly polarized light rely on linear effects which arise beyond the electric-dipole approximation, posing major limitations for ultrafast spectroscopy. Here we show how to turn an ultrashort elliptical pulse into an efficient chiro-optical tool: by tilting its polarization plane towards its propagation direction. This forward tilt can be achieved by focusing the beam tightly, creating structured light which exhibits a nontrivial polarization pattern in space. Using state-of-the-art computational modelling, we show that our structured field realizes a near-field interferometer for efficient chiral recognition that separates the nonlinear optical response of left- and right-handed molecules in space. Our work provides a simple, yet highly efficient, way of spatially structuring the polarization of light to image molecular chirality, with extreme enantio-efficiency and on ultrafast time scales.

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APA 7

al, R. L. E. (2023). Tilting light’s polarization plane to spatially separate the ultrafast nonlinear response of chiral molecules. https://doi.org/10.1515/nanoph-2022-0802

MLA

al, Rego Laura et. "Tilting light’s polarization plane to spatially separate the ultrafast nonlinear response of chiral molecules." 2023. https://doi.org/10.1515/nanoph-2022-0802.

Chicago

al, Rego Laura et. 2023. "Tilting light’s polarization plane to spatially separate the ultrafast nonlinear response of chiral molecules.". https://doi.org/10.1515/nanoph-2022-0802.

Harvard

al, R. L. E. 2023, Tilting light’s polarization plane to spatially separate the ultrafast nonlinear response of chiral molecules, Wiley, available at: https://doi.org/10.1515/nanoph-2022-0802 [Accessed 8 Aug. 2026].

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Title
Tilting light’s polarization plane to spatially separate the ultrafast nonlinear response of chiral molecules
Author / contributors
Rego Laura et al
Publisher
Wiley
Publication year
2023
ISSN
2192-8606
ISSN
2192-8606
Language
English

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