DocumentCode :
47832
Title :
Mode Converter Optical Isolator Based on Dual Negative Refraction Photonic Crystal
Author :
Aroua, Walid ; AbdelMalek, F. ; Haxha, S. ; Tesfa, Sintayehu ; Bouchriha, H.
Author_Institution :
Dept. of Phys., El Manar Univ., Tunis, Tunisia
Volume :
50
Issue :
8
fYear :
2014
fDate :
Aug. 2014
Firstpage :
633
Lastpage :
638
Abstract :
A new design of an optical isolator based on photonic transitions in the interbands of a honeycomb structure that generates a dual negative refraction in a photonic crystal is presented. The involved photonic transition is associated to the perturbation of the dielectric constant of the medium. The band structure is determined using the plane wave method where the transmission spectra, field profile, and mode amplitudes are obtained by applying the finite difference time domain method. Due to the time-dependent perturbation of the refractive index of the medium that constitutes the dual negative refraction, asymmetric transmission mechanism is achieved for one of the desired modes, demonstrating optical isolation. Using the dual negative refraction effect in photonic crystal structure, the optical isolation is reported for only one of the desired optical modes. It is anticipated that the proposed mode conversion mechanism can be employed for designing ultrahigh-speed optical interconnections. The proposed optical isolator model is expected to have a significant impact on designing ultrahigh-speed integrated optical platforms.
Keywords :
finite difference time-domain analysis; integrated optoelectronics; optical design techniques; optical isolators; permittivity; photonic band gap; photonic crystals; refractive index; asymmetric transmission mechanism; band structure; dielectric constant; dual negative refraction photonic crystal; field profile; finite difference time domain method; honeycomb structure; mode amplitudes; mode converter optical isolator; optical isolator model; optical modes; photonic crystal structure; photonic transitions; plane wave method; refractive index; time-dependent perturbation; transmission spectra; ultrahigh-speed integrated optical platform; ultrahigh-speed optical interconnections; Isolators; Nonlinear optics; Optical filters; Optical interconnections; Optical propagation; Optical refraction; Optical variables control; Photonic crystals; metamaterials; nanostmctured materials; optical computing; photonic integrated circuits;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2014.2330762
Filename :
6832434
Link To Document :
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