Title :
Integrated optical 2 × 2 switch for wavelength multiplexed interconnects
Author :
Williams, Kevin A. ; Roberts, Guy F. ; Lin, Tao ; Penty, Richard V. ; White, Ian H. ; Glick, Madeleine ; McAuley, Derek
Author_Institution :
Cambridge Univ. Eng. Dept., UK
Abstract :
A highly compact integrated optical switch is proposed and demonstrated for broadband optical switching applications. Routing of 8 × 10 Gb/s data channels is demonstrated using a low-cost 1250-Mb/s control scheme. The advantages of lossless operation, broad optical bandwidth, and nanosecond switching times are leveraged. Multichannel wavelength is exploited for reduced latency, enhanced capacity, and functionality, while retaining compatibility with existing off-the-shelf electronics and transceiver technology. The requirements for optical header processing, wavelength translation, and optical buffering are avoided. Low-penalty multiwavelength transmission is demonstrated for a highly compact sub-mm2 amplifying 2 × 2 switch. Pattern dependent gain and amplified spontaneous emission are minimized to facilitate 0.0-0.4 dB penalty. Mitigation techniques compatible with the architecture are deployed to reduce the penalty under adverse operating conditions. Control schemes are proposed and demonstrated to facilitate 8 × 10 Gb/s optically switched networking.
Keywords :
high-speed optical techniques; integrated optics; integrated optoelectronics; optical fibre communication; optical interconnections; optical switches; packet switching; semiconductor optical amplifiers; superradiance; telecommunication network routing; wavelength division multiplexing; 10 Gbit/s; 1250 Mbit/s; 80 Gbit/s; amplified spontaneous emission; broad optical bandwidth; broadband optical switching; compact amplifying switch; data channel routing; integrated optical switch; lossless operation; low-cost control scheme; low-penalty multiwavelength transmission; mitigation techniques; multichannel wavelength; nanosecond switching times; off-the-shelf electronics; optically switched networking; packet routing applications; pattern dependent gain; semiconductor optical amplifier; transceiver technology; wavelength multiplexed interconnects; Bandwidth; Delay; Integrated optics; Optical buffering; Optical interconnections; Optical losses; Optical switches; Routing; Stimulated emission; Transceivers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2004.841722