Title :
Optimum Design for 160-Gb/s All-Optical Time-Domain Demultiplexing Based on Cascaded Second-Order Nonlinearities of SHG and DFG
Author :
Shen, Jing ; Yu, Song ; Gu, Wanyi ; Yao, Jian Quan
Author_Institution :
Key Lab. of Opt. Commun. & Lightwave Technol., Beijing Univ. of Posts & Telecommun. (BUPT), Beijing
fDate :
6/1/2009 12:00:00 AM
Abstract :
All-optical time-domain demultiplexing based on cascaded second-order nonlinearities of second-harmonic generation and difference-frequency generation in quasi-phase-matched periodically poled lithium niobate waveguides is discussed in order to maximize conversion efficiency and control crosstalk under the given level. The three parameters, including the waveguide length, clock pulsewidth, and clock offset, are investigated carefully and comprehensively. The concepts of maximum waveguide length, maximum clock pulsewidth, and optimal clock offset are defined, and their theoretical expressions are derived for the demultiplexing from 160 to 10 Gb/s. The results calculated from the theoretical expressions are well-consistent with those from the numerical simulation. For two kinds of practical situations, the waveguide length or the clock offset being given, an optimum scheme is proposed to determine the other two parameters readily. The maximum conversion efficiency can therefore be achieved while the quality of the converted wave is sufficient for the practical situations.
Keywords :
lithium compounds; optical communication; optical crosstalk; optical harmonic generation; optical phase matching; optical waveguides; time division multiplexing; LiNbO3; all-optical time-domain demultiplexing; bit rate 160 Gbit/s; cascaded second-order nonlinearity; difference-frequency generation; optical crosstalk; quasiphase-matched periodically poled lithium niobate waveguide; second-harmonic generation; Clocks; Crosstalk; Demultiplexing; Lithium niobate; Numerical simulation; Optical noise; Optical signal processing; Optical waveguides; Space vector pulse width modulation; Time domain analysis; All-optical time-domain multiplexing (OTDM); cascaded second-order nonlinearities; conversion efficiency; crosstalk; difference-frequency generation (DFG); periodically poled lithium niobate (PPLN); quasi-phase-matching (QPM); second-harmonic generation (SHG);
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2009.2013147