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- Title
Kerker‐Type Intensity‐Gradient Force of Light.
- Authors
Xu, Xiaohao; Nieto‐Vesperinas, Manuel; Qiu, Cheng‐Wei; Liu, Xiaoshuai; Gao, Dongliang; Zhang, Yao; Li, Baojun
- Abstract
The intensity gradient of light represents the most important property for optical tweezers to manipulate small particles, which is known to produce a conservative optical force that is either attractive or repulsive. Here, it is shown that Kerker interference, the interplay between electric and magnetic dipoles induced in nanoparticles, permits the intensity gradient to exert a nonconservative optical force, in the case of a standard optical trap created with linearly or elliptically polarized Gaussian beams. The Kerker‐type intensity‐gradient force has an "anisotropic" directionality, and it tends to repel particles away from the beam axis. Such repulsive effects can greatly sensitize the particle trapping behavior of optical tweezers to the particle size. Utilizing these peculiar properties, all‐optical sorting of Si nanoparticles is theoretically demonstrated, with tunable size‐selection criterion and accuracy.
- Subjects
OPTICAL tweezers; GAUSSIAN beams; OPTICAL properties; NANOPARTICLES; LIGHT intensity; CASIMIR effect; MAGNETIC dipoles; OPTICAL interference
- Publication
Laser & Photonics Reviews, 2020, Vol 14, Issue 4, p1
- ISSN
1863-8880
- Publication type
Article
- DOI
10.1002/lpor.201900265