Title :
All-Optical xor Gates for QPSK Signals Based on Four-Wave Mixing in a Semiconductor Optical Amplifier
Author :
Kong, Deming ; Li, Yan ; Wang, Hui ; Zhang, Xinping ; Zhang, Junyi ; Wu, Jian ; Lin, Jintong
Author_Institution :
State Key Lab. of Inf. Photonics & Opt. Commun., Beijing Univ. of Posts & Telecommun., Beijing, China
fDate :
6/15/2012 12:00:00 AM
Abstract :
With the development of transmission systems, all-optical networks need to adapt and process signals utilizing advanced modulation formats. One key element of all-optical networks is all-optical logic gates. Yet few research works on all-optical logic gates are focused on processing such signals. In this letter, all-optical XOR gates for optical quadrature phase-shift keying signals are proposed and demonstrated based on four-wave mixing (FWM) in a semiconductor optical amplifier (SOA). Error-free performance is achieved through a 40-GBaud proof-of-concept experiment with an average power penalty of 6 dB. Cross-phase modulation (XPM) effect is found to be the key limiting factor. Given the integration ability of SOA and the format transparency of FWM process, our scheme has potential for future all-optical networks. Yet the XPM effect still needs to be mitigated to achieve better performance in future works.
Keywords :
logic gates; multiwave mixing; optical logic; quadrature phase shift keying; semiconductor optical amplifiers; FWM; QPSK signals; SOA; XPM effect; all-optical XOR gates; all-optical logic gates; all-optical networks; cross-phase modulation; four-wave mixing; optical quadrature phase-shift keying signals; semiconductor optical amplifier; transmission systems; Logic gates; Optical fibers; Optical filters; Phase shift keying; Semiconductor optical amplifiers; Optical fiber communication; optical Kerr effect; optical fiber network; optical signal processing;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2012.2191771