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Optimization of nanotube electrode geometry in a liquid crystal media from wavefront aberrations
Ranjith Rajasekharan1, Qing Dai, Haider Butt
1Department of Electrical Engineering, University of Cambridge, Cambridge, UK.
Abstract:
This paper presents experimental optimization of number and geometry of nanotube electrodes in a liquid crystal media from wavefront aberrations for realizing nanophotonic devices. The refractive-index gradient profiles from different nanotube geometries--arrays of one, three, four, and five--were studied along with wavefront aberrations using Zernike polynomials. The optimizations help the device to make application in the areas of voltage reconfigurable microlens arrays, high-resolution displays, wavefront sensors, holograms, and phase modulators.

