Title :
Cascaded Microresonator-Based Matrix Switch for Silicon On-Chip Optical Interconnection
Author :
Poon, Andrew W. ; Luo, Xianshu ; Xu, Fang ; Chen, Hui
Author_Institution :
Dept. of Electron. & Comput. Eng., Hong Kong Univ. of Sci. & Technol., Hong Kong
fDate :
7/1/2009 12:00:00 AM
Abstract :
This paper reviews developments in cascaded microresonator-based matrix switches for silicon photonic interconnection networks in many-core computing applications. Specifically, we emphasize our recently proposed 5 times 5 matrix switch comprising two-dimensionally cascaded microring resonator-based electrooptic switches coupled to a waveguide cross-grid on a silicon chip. The cross-grid adopts low-loss low-crosstalk multimode-interference-based waveguide crossings. Such a microresonator-based matrix switch offers nonblocking interconnections among multiple inputs and multiple outputs, with the key merits of i) a tens to hundreds of micrometers-scale footprint, ii) gigabit/second-scale data transmission, iii) nanosecond-speed circuit-switching, iv) 100-muW-scale DC power consumption per link, and v) large-scale integration for networks-on-chips applications. We analyze in detail the microring resonator-based cross-grid switch design for high-data-rate signal transmission in the context of our proposed 5 times 5 matrix switch. We also study the feasibility of large-scale integration of the matrix switch. We report proof-of-concept experiments of a single cross-grid switch element and a 2 times 2 matrix switch, propose design guidelines, and discuss future engineering challenges.
Keywords :
electro-optical switches; elemental semiconductors; large scale integration; micro-optomechanical devices; microcavities; micromechanical resonators; nanophotonics; optical crosstalk; optical design techniques; optical interconnections; optical waveguides; silicon; Si; cascaded microresonator-based matrix switch; high-data-rate signal transmission; large-scale integration; low-loss low-crosstalk multimode-interference-based waveguide; microring resonator-based electrooptic switches; nanosecond-speed circuit-switching; photonic interconnection networks; silicon on-chip optical interconnection; Computer applications; Computer networks; Large scale integration; Multiprocessor interconnection networks; Optical interconnections; Optical resonators; Optical switches; Optical waveguides; Silicon; Transmission line matrix methods; Matrix switch; microresonator; networks on chips; optical interconnect; silicon waveguide;
Journal_Title :
Proceedings of the IEEE
DOI :
10.1109/JPROC.2009.2014884