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Optical gradient force on chiral particles

Cited 8 time in Web of Science Cited 12 time in Scopus
Authors

Yamanishi, Junsuke; Ahn, Hyo-Yong; Yamane, Hidemasa; Hashiyada, Shun; Ishihara, Hajime; Nam, Ki Tae; Okamoto, Hiromi

Issue Date
2022-09
Publisher
American Association for the Advancement of Science
Citation
Science Advances, Vol.8 No.38, p. eabq2604
Abstract
When a chiral nanoparticle is optically trapped using a circularly polarized laser beam, a circular polarization (CP)-dependent gradient force can be induced on the particle. We investigated the CP-dependent gradient force exerted on three-dimensional chiral nanoparticles. The experimental results showed that the gradient force depended on the handedness of the CP of the trapping light and the particle chirality. The analysis revealed that the spectral features of the CP handedness-dependent gradient force are influenced not only by the real part of the refractive index but also by the electromagnetic field perturbed by the chiral particle resonant with the incident light. This is in sharp contrast to the well-known behavior of the gradient force, which is governed by the real part of the refractive index. The extended aspect of the chiral optical force obtained here can provide novel methodologies on chirality sensing, manipulation, separation, enantioselective biological reactions, and other fields.
ISSN
2375-2548
URI
https://hdl.handle.net/10371/189338
DOI
https://doi.org/10.1126/sciadv.abq2604
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