Paper
15 September 2006 Laser trapping of low refractive index colloidal particles in a nematic liquid crystal
Author Affiliations +
Proceedings Volume 6332, Liquid Crystals X; 63320V (2006) https://doi.org/10.1117/12.680971
Event: SPIE Optics + Photonics, 2006, San Diego, California, United States
Abstract
We describe and analyze laser trapping of small colloidal particles in a nematic liquid crystal, where the index of refraction of colloidal particles is smaller compared to the indices of the liquid crystal. Two mechanisms are identified that are responsible for this anomalous trapping: (i) below the optical Freedericksz transition, the trapping is due to the anisotropic dielectric interaction of the polarized light with the inhomogeneous director field around the colloidal particle, (ii) above the optical Freedericksz transition, the optical trapping is accompanied by the elasticity-mediated interaction between the optically distorted region of a liquid crystal and the particle. In majority of the experiments, the trapping above the Freedericksz transition is highly anisotropic. Qualitative agreement is found with a numerical analysis, considering nematic director elastic distortion, dielectric director-light field coupling and optical repulsion due to low refraction index colloid in a high index surroundings.
© (2006) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Igor Muševič, Miha Škarabot, Miha Ravnik, Igor Poberaj, Dušan Babič, Natan Osterman, Andriy Nych, Ulyana Ognysta, Vassili Nazarenko, and Slobodan Žumer "Laser trapping of low refractive index colloidal particles in a nematic liquid crystal", Proc. SPIE 6332, Liquid Crystals X, 63320V (15 September 2006); https://doi.org/10.1117/12.680971
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KEYWORDS
Particles

Liquid crystals

Optical trapping

Refractive index

Dielectric polarization

Optical tweezers

Dielectrics

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