Title :
Penalty-free polarization insensitive wavelength conversion using bidirectional four-wave mixing in a single semiconductor optical amplifier
Author :
Tang, J.M. ; Spencer, Paul S. ; Shore, Keith Alan
Abstract :
Four-wave mixing (FWM) in Semiconductor Optical Amplifiers (SOAs) has been extensively investigated for a number of applications in optical communications. The strong polarization sensitivity of the mixing process is, however, a major issue in the utilization of the FWM technique in practical networks. Several schemes for polarization insensitive FWM in SOAs have been demonstrated, which utilise rather complex configurations involving several optical components. Recently, we proposed an extremely simple scheme for polarization insensitive FWM, utilizing just one polarization insensitive SOA and one pump wave. Furthermore, employing two pump sources in the scheme, polarization insensitive and frequency-conversion frequency-interval independent FWM can be also obtained. In all the aforementioned configurations, polarization insensitive SOAs were employed to achieve the polarization insensitive FWM performance. In this paper, we will show that polarization insensitive FWM operation can also be realised, using a polarization sensitive SOA by modifying the configuration
Keywords :
distributed processing; Grid services; adaptivity; application case studies; cluster computing; high-performance distributed computing; high-performance storage; networking; scheduling; service quality; software environments; storage management; systems case studies; Clocks; Counting circuits; Four-wave mixing; Frequency; Laser excitation; Optical polarization; Optical propagation; Optical pulse generation; Semiconductor optical amplifiers;
Conference_Titel :
Electronic-Enhanced Optics, Optical Sensing in Semiconductor Manufacturing, Electro-Optics in Space, Broadband Optical Networks, 2000. Digest of the LEOS Summer Topical Meetings
Conference_Location :
Aventura, FL, USA
Print_ISBN :
0-7803-6252-7
DOI :
10.1109/LEOSST.2000.869768