DocumentCode
754270
Title
On the Temperature-Dependent Gain and Noise Figure Analysis of C-Band High-Concentration EDFAs With the Effect of Cooperative Upconversion
Author
Berkdemir, Cüneyt ; Özsoy, Sedat
Author_Institution
Dept. of Phys., Fac. of Arts & Sci., Erciyes Univ., Kayseri
Volume
27
Issue
9
fYear
2009
fDate
5/1/2009 12:00:00 AM
Firstpage
1122
Lastpage
1127
Abstract
We present an efficient temperature-dependent analysis to study the effect of cooperative upconversion on the temperature-dependent gain (TDG) performance of the C-band erbium-doped fiber amplifier (EDFA) at high-concentration. The influence of cooperative upconversion on the TDG is examined by using a set of temperature-dependent rate and light propagation equations. In the analysis given, the amplified spontaneous emission (ASE), as well as the excited state absorption (ESA) are also considered. In the forward pumping configuration at a signal wavelength of 1547 nm and in the temperature range of - 40degC to + 80degC, the variations of the TDG and the noise figure (NF) are about 1.7 and 0.9 dB, respectively. Numerical analysis results show that, with 260-mW/1480-nm pump power, an erbium-doped fiber amplifier having a doping concentration of 4.4 times 1026 ion/m3 and optimum length of 9.2 cm may reach a signal gain of 44.6 dB and a noise figure of 3.9 dB at room temperature.
Keywords
doping profiles; erbium; excited states; optical fibre amplifiers; optical pumping; superradiance; C-band erbium-doped fiber amplifier; EDFA; Jk:Er; amplified spontaneous emission; doping concentration; excited state absorption; forward pumping configuration; light propagation equations; noise figure; power 260 mW; pump power; temperature -40 degC to 80 degC; temperature-dependent gain; wavelength 1480 nm; wavelength 1547 nm; Absorption; Equations; Erbium-doped fiber amplifier; Noise figure; Noise measurement; Optical propagation; Performance analysis; Performance gain; Spontaneous emission; Temperature distribution; Cooperative upconversion; erbium-doped fiber (EDF); optical fiber amplifier; temperature-dependent gain (TDG) and noise figure (NF);
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2008.929410
Filename
4840617
Link To Document