DocumentCode :
48213
Title :
Beam steering with graded index photonic crystal lens and liquid crystal
Author :
Bahari, Babak ; Rashed-Mohassel, Jalil
Author_Institution :
Center of Excellence on Appl. Electromagn. Syst., Univ. of Tehran, Tehran, Iran
Volume :
8
Issue :
1
fYear :
2014
fDate :
Feb-14
Firstpage :
11
Lastpage :
17
Abstract :
In this numerical study, a new compact and tunable beam-steering device composed of graded index photonic crystal lens and liquid crystal material has been presented and demonstrated. The beam-steering device can work in two modes: First, incident single wavelength beam steers by tuning the refractive index of the liquid crystal material. Second, by fixing the refractive index of the liquid crystal material, incident multi-wavelength beam steers with different off-axis angles for each wavelength. The numerical simulations with finite-difference time-domain method reveal that wide-angle, ±28.4°, beam steering can be achieved when the length of the liquid crystal layer equals 5.17 μm. Moreover, the wavelengths over λ = 1.518-1.553 μm or λ = 1.487-1.518 μm can be steered to different angles. A special characteristic of the presented structure gives an opportunity to be used as an efficient element in a high integrated optical device for miniaturisation and tuning purposes.
Keywords :
beam steering; finite difference time-domain analysis; gradient index optics; integrated optics; lenses; numerical analysis; beam steering; beam-steering device; finite-difference time-domain method; graded index photonic crystal lens; incident single wavelength; integrated optical device; liquid crystal layer; liquid crystal material; numerical simulations; refractive index; wavelength 1.487 mum to 1.553 mum;
fLanguage :
English
Journal_Title :
Optoelectronics, IET
Publisher :
iet
ISSN :
1751-8768
Type :
jour
DOI :
10.1049/iet-opt.2013.0092
Filename :
6701515
Link To Document :
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