DocumentCode :
941406
Title :
Optical unidirectional devices by complex spatial single sideband perturbation
Author :
Greenberg, Maxim ; Orenstein, Meir
Author_Institution :
Electr. Eng. Dept., Technion-Israel Technol. Inst., Haifa, Israel
Volume :
41
Issue :
7
fYear :
2005
fDate :
7/1/2005 12:00:00 AM
Firstpage :
1013
Lastpage :
1023
Abstract :
Important functionality of photonics circuits is invoking interactions between few optical modes. Intermodal power exchange can be realized by introducing a spatial perturbation of the refractive index. The power transfer is symmetric from mode n to m and vice versa, as well as time reversible-both can impede definite performance of a variety of optical devices. By modifying the coupling concept-i.e., using a matched periodic modulation of both the index of refraction and loss (gain) of the medium, we implement a complex spatially single sideband perturbation (SSP), which breaks the symmetry and allows a unidirectional energy flow from mode m to mode n, while blocking the inverse flow. We investigated various deviations from ideal conditions including detuned schemes (gratings period not matched with the difference between propagation constants), unequal real and imaginary coupling coefficients, self-coupling coefficients, saturation effects and spatial separation of the real and imaginary perturbations. Finally the SSP is exemplified in the design of a novel broad-band "add" component for optical add/drop multiplexing system.
Keywords :
coupled mode analysis; diffraction gratings; integrated optics; optical modulation; optical saturation; optical waveguides; refractive index; complex spatial single sideband perturbation; intermodal power exchange; matched periodic modulation; optical add/drop multiplexing; optical unidirectional devices; photonics circuits; power transfer; propagation constants; refractive index spatial perturbation; saturation effects; self-coupling coefficients; Circuits; Impedance; Optical devices; Optical losses; Optical refraction; Optical saturation; Optical variables control; Photonics; Power markets; Refractive index; Complex perturbation; coupled mode analysis; optical devices; phase matching; waveguide couplers; waveguides;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2005.848948
Filename :
1453728
Link To Document :
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