1 September 2005 Experimental investigation of gain transients in praseodymium-doped fluoride fiber amplifiers
Nnake Nweke, Robert J. Runser, Scott R. McNown, Jacob B. Khurgin
Author Affiliations +
Abstract
We experimentally analyze power excursions on a surviving data channel due to praseodymium-doped fluoride fiber amplifier (PDFFA) gain transients. These transients are a result of the equivalent time-varying power for adding or dropping up to 15 wavelength division multiplexed (WDM) signals from a 16-channel WDM system at 1310 nm. We find that power excursions for the surviving 10-Gbit/s data channel increase with an increase in the number of channels added or dropped from the system. Bit error rate (BER) measurements on the surviving channel indicate that a power penalty of up to 3.5 dB as compared to the steady-state condition results from a 15-channel add-drop event. These results provide indication of the applicability of PDFFA amplification to dynamic reconfigurable optical networks in future DWDM systems that incorporate wavelengths in the 1310-nm region.
©(2005) Society of Photo-Optical Instrumentation Engineers (SPIE)
Nnake Nweke, Robert J. Runser, Scott R. McNown, and Jacob B. Khurgin "Experimental investigation of gain transients in praseodymium-doped fluoride fiber amplifiers," Optical Engineering 44(9), 095004 (1 September 2005). https://doi.org/10.1117/1.2047567
Published: 1 September 2005
Lens.org Logo
CITATIONS
Cited by 3 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Optical amplifiers

Fiber amplifiers

Dense wavelength division multiplexing

Modulation

Optical networks

Receivers

Wavelength division multiplexing

RELATED CONTENT

Spectral-sliced optical interconnect testbed
Proceedings of SPIE (February 09 1993)
Gain flattening filter design for EDFA
Proceedings of SPIE (February 18 2004)
High-speed optical components for lightwave systems
Proceedings of SPIE (July 11 2002)

Back to Top