arXiv · 1605.00243
Optical trapping by Laguerre-Gaussian beams: Symmetries, stability and equilibria
Abstract
We use the T-matrix formalism in combination with the method of far-field matching to evaluate the optical force exerted by Laguerre-Gaussian (LG) light beams on a spherical (Mie) particle. For both non-vortex and optical vortex LG beams, the theoretical results are used to analyze the optical-force-induced dynamics of the scatterer near the trapping points represented by the equilibrium (zero-force) positions. The regimes of linearized dynamics are described in terms of the stiffness matrix spectrum and the damping constant of the ambient medium. For the purely azimuthal LG beams, the dynamics is found to be locally non-conservative and is characterized by the presence of conditionally stable equilibria (unstable zero-force points that can be stabilized by the ambient damping). The effects related to the Mie resonances that under certain conditions manifest themselves as the points changing the trapping properties of the particles are discussed.
Explore related subjects
Keep this discovery
Alexei D. Kiselev, Dmytro O. Plutenko. 2016-05-01. Optical trapping by Laguerre-Gaussian beams: Symmetries, stability and equilibria. https://arxiv.org/abs/1605.00243
Cite the original work for its findings. Save a collection to share your selection of sources.