Probing the chirality of a single microsphere trapped by a focused vortex beam through its orbital period

  • When microspheres are illuminated by tightly focused vortex beams, they can be trapped in a non-equilibrium steady state where they orbit around the optical axis. By using the Mie–Debye theory for optical tweezers, we demonstrate that the orbital period strongly depends on the particle’s chirality index. Taking advantage of such sensitivity, we put forth a method to experimentally characterize with high precision the chiroptical response of individual optically trapped particles. The method allows for an enhanced precision at least one order of magnitude larger than that of similar existing enantioselective approaches. It is particularly suited to probe the chiroptical response of individual particles, for which light-chiral matter interactions are typically weak.

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Metadaten
Author:Kainã Diniz, Tanja Schoger, Arthur L. da Fonseca, Rafael S. Dutra, Diney S. Ether Jr, Gert-Ludwig IngoldORCiDGND, Felipe A. Pinheiro, Nathan B. Viana, Paulo A. Maia Neto
URN:urn:nbn:de:bvb:384-opus4-1185278
Frontdoor URLhttps://opus.bibliothek.uni-augsburg.de/opus4/118527
ISSN:2192-8606OPAC
ISSN:2192-8614OPAC
Parent Title (English):Nanophotonics
Publisher:Walter de Gruyter
Place of publication:Berlin
Type:Article
Language:English
Year of first Publication:2025
Publishing Institution:Universität Augsburg
Release Date:2025/01/27
Volume:14
Issue:2
First Page:209
Last Page:217
DOI:https://doi.org/10.1515/nanoph-2024-0517
Institutes:Mathematisch-Naturwissenschaftlich-Technische Fakultät
Mathematisch-Naturwissenschaftlich-Technische Fakultät / Institut für Physik
Mathematisch-Naturwissenschaftlich-Technische Fakultät / Institut für Physik / Lehrstuhl für Theoretische Physik I
Dewey Decimal Classification:5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Licence (German):CC-BY 4.0: Creative Commons: Namensnennung (mit Print on Demand)