Title :
A Silicon Photonic Interferometric Router Device Based on SCISSOR Concept
Author :
Masi, Marco ; Mancinelli, Mattia ; Battarelli, Alberto ; Guider, Romain ; Vanacharla, Manga Rao ; Bettotti, Paolo ; Fedeli, Jean-Marc ; Pavesi, Lorenzo
Author_Institution :
Dept. of Phys., Univ. of Trento, Trento, Italy
Abstract :
A novel wavelength routing device for optical on-chip network applications is presented. It is based on the constructive and destructive interferences that occur when two side-coupled integrated spaced sequences of resonators (SCISSORs) are coupled in parallel to a single common waveguide. Its potential application for coarse wavelength division multiplexing, i.e., band routing functionalities, and its robustness against fabrication tolerances and signal imbalances are analyzed. Design, simulation, fabrication, and experimental characterizations are described. We compare measurements of the fabricated device with simulations for the ideal and the actual device, where random variations in the geometrical parameters inherent in the fabrication process are considered. This allows demonstrating the concept of interferometric SCISSOR routing and to discuss the limits and advantages of coupled resonator-based design for routing.
Keywords :
elemental semiconductors; integrated optics; light interferometers; optical communication equipment; optical design techniques; optical fabrication; optical resonators; optical waveguides; photonic crystals; silicon; telecommunication network routing; wavelength division multiplexing; Si; band routing functionality; coarse wavelength division multiplexing; constructive interferences; destructive interferences; optical design; optical fabrication; optical on-chip network applications; side-coupled integrated spaced resonator sequences; silicon photonic interferometric router device; single common waveguide; Couplings; Optical device fabrication; Optical interferometry; Optical resonators; Optical waveguides; Photonics; Filtering; microresonators; photonic switching systems;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2011.2159826