Title :
Compact multichannel optical power monitor module for DWDM networks using a novel glass diffraction grating
Author :
Nakama, K. ; Shimmo, K. ; Yamamoto, H. ; Nakamura, K. ; Hori, M. ; Kawazu, M. ; Nagata, H. ; Komaba, N. ; Arima, Y. ; Nagasaka, S. ; Satoh, Y. ; Sasaki, Y.
Author_Institution :
Tsukuba Res. Center, Nippon Sheet Glass Co. Ltd., Ibaraki, Japan
Abstract :
A real time power-monitoring module for each wavelength channel that is suitable for guarding dense WDM (DWDM) networks and controlling an optical fiber amplifier is described. We proposed a compact real time demultiplexing channel monitor module (DCMM), which was applied to a micro-monochromator using an optimised photodetector array (PDA) and a novel sol-gel glass diffraction grating. The on board type demultiplexing channel monitor modules, which were based on the simple free space optics of the littrow mount with a low thermal expansion coefficient package, were fabricated and the optical performance estimated. From the results, it was found that the flattop and athermal characteristics of the wavelength responses were the best solution for DWDM channel monitoring systems.
Keywords :
demultiplexing equipment; diffraction gratings; modules; monitoring; optical arrays; optical communication equipment; optical fibre amplifiers; optical fibre networks; photodetectors; thermal expansion; wavelength division multiplexing; DWDM channel monitoring systems; DWDM networks; athermal characteristics; demultiplexing channel monitor modules; dense WDM; flattop characteristics; free space optics; littrow mount; low thermal expansion coefficient package; micro-monochromator; multichannel optical power monitor module; optical fiber amplifier; optical performance; photodetector array; real time demultiplexing channel monitor module; real time power-monitoring module; sol-gel glass diffraction grating; wavelength channel; wavelength response; Demultiplexing; Diffraction gratings; Glass; Monitoring; Optical control; Optical diffraction; Optical fiber networks; Stimulated emission; WDM networks; Wavelength division multiplexing;
Conference_Titel :
Optical Communication, 2001. ECOC '01. 27th European Conference on
Print_ISBN :
0-7803-6705-7
DOI :
10.1109/ECOC.2001.989698