28 August 2009 Optimization of optically-driven micromachines
Author Affiliations +
Abstract
While a variety of different optically-driven micromachines have been demonstrated by a number of groups around the world, there is a striking similarity in the designs used. The typical optically-driven rotor consists of a number of arms attached to a central hub, or elongated stalk in the case of free-floating rotors. This is a consequence of the relationship between the symmetry of a scattering object and the transfer of optical angular momentum from a beam to the object. We use a hybrid discrete-dipole approximation/T-matrix method algorithm to computationally model the scattering by such optically-driven rotors. We systematically explore the effects of the most important parameters of rotors, such as the thickness, length, and width of the arms, in order to maximize the torque efficiency. We show that it is possible to use computational modelling to optimize the design of such devices. We also compare the computational results with experiment.
© (2009) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Vincent L. Y. Loke, Vincent L. Y. Loke, Theodor Asavei, Theodor Asavei, Timo A. Nieminen, Timo A. Nieminen, Norman R. Heckenberg, Norman R. Heckenberg, Halina Rubinsztein-Dunlop, Halina Rubinsztein-Dunlop, } "Optimization of optically-driven micromachines", Proc. SPIE 7400, Optical Trapping and Optical Micromanipulation VI, 74001Z (28 August 2009); doi: 10.1117/12.828423; https://doi.org/10.1117/12.828423
PROCEEDINGS
11 PAGES


SHARE
RELATED CONTENT

Optical torque and symmetry
Proceedings of SPIE (October 18 2004)
Pattern formation in evanescent wave optical traps
Proceedings of SPIE (August 26 2005)
Optical microrotors: theory, design and fabrication
Proceedings of SPIE (September 05 2007)
Computational modeling of optical tweezers
Proceedings of SPIE (October 18 2004)

Back to Top