Title :
Self-routing wavelength switches
Author :
Kuang-Yi Wu ; Jian-Yu Liu
Author_Institution :
Macro-Vision Commun., Boulder, CO, USA
Abstract :
A wavelength routing switch structure for applications of dense wavelength division-multiplexing (DWDM) network is proposed and experimentally demonstrated. This innovative structure integrates both wavelength filtering and spatial routing functions into a compact device. The versatile filter design provides a prescribed wavelength transmission function and maintains low optical channel crosstalks. Liquid crystal technology is implemented in the device to perform the spatial routing function. Several these DWDM routing switches have been constructed. The insertion loss of <-3 dB and channel crosstalks of <-30 dB are achieved for all these switches. A two-channel self-routing DWDM system based on these wavelength switches has been demonstrated. In this optical self-routing demonstration, the data signals are carried by 1533 nm and 1549 nm optical channels and the routing information is coded at 1310 nm wavelength.
Keywords :
electro-optical switches; encoding; liquid crystal devices; optical communication equipment; optical crosstalk; optical fibre networks; optical losses; telecommunication network routing; wavelength division multiplexing; 1310 nm; 1533 nm; 1549 nm; DWDM routing switches; WDM network; compact device; data signals; dense wavelength division-multiplexing; insertion loss; liquid crystal technology; low optical channel crosstalks; optical self-routing demonstration; self-routing wavelength switches; spatial routing function; spatial routing functions; two-channel self-routing DWDM system; versatile filter design; wavelength filtering; wavelength routing switch structure; wavelength transmission function; Crosstalk; Filtering; Insertion loss; Liquid crystal devices; Optical design; Optical filters; Optical losses; Optical switches; Wavelength division multiplexing; Wavelength routing;
Conference_Titel :
Vertical-Cavity Lasers, Technologies for a Global Information Infrastructure, WDM Components Technology, Advanced Semiconductor Lasers and Applications, Gallium Nitride Materials, Processing, and Devi
Conference_Location :
Montreal, Que., Canada
Print_ISBN :
0-7803-3891-X
DOI :
10.1109/LEOSST.1997.619151