DocumentCode :
3606845
Title :
Enhanced Erbium–Zirconia–Yttria–Aluminum Co-Doped Fiber Amplifier
Author :
Paul, M.C. ; Dhar, A. ; Das, S. ; Pal, M. ; Bhadra, S.K. ; Markom, A.M. ; Rosli, N.S. ; Hamzah, A. ; Ahmad, H. ; Harun, S.W.
Author_Institution :
Fiber Opt. & Photonics Div., Central Glass & Ceramic Res. Inst., Kolkata, India
Volume :
7
Issue :
5
fYear :
2015
Firstpage :
1
Lastpage :
7
Abstract :
An efficient optical amplifier is demonstrated using an improved erbium-zirconia-yttria-aluminum co-doped fiber (Zr-EDF) as the gain medium. With a combination of both Zr and Al, we could achieve a high erbium doping concentration with an absorption loss of around 80.0 dB/m at 980 nm. The Zr-EDF is obtained from a fiber preform, which is fabricated in a ternary glass host, i.e., a zirconia-yttria-aluminum co-doped silica fiber, using a modified chemical vapor deposition, in conjunction with a solution doping process. At the optimum length of 1 m, the Zr-EDF amplifier produces a flat gain of 38 dB within a wavelength region between 1530 and 1565 nm with a gain variation of less than 3 dB when the input signal power and 980 nm pump power are fixed at $-$30 dBm and 130 mW, respectively. The highest gain of 40.3 dB is obtained at 1560 nm wavelength. Compared with the previous Zr-EDF amplifier, the proposed Zr-EDFA shows improved gain, particularly at longer wavelengths. The gain is enhanced by about 15.8 dB at a wavelength of 1560 nm for an input signal of $-$30 dBm.
Keywords :
aluminium; chemical vapour deposition; doping; erbium; optical fibre amplifiers; optical losses; optical pumping; phosphosilicate glasses; yttrium compounds; zirconium compounds; Er2O3-ZrO2-Y2O3-Al2O3-SiO2-P2O5; absorption loss; erbium-zirconia-yttria- aluminum co-doped fiber amplifier; gain medium; gain variation; high erbium doping concentration; modified chemical vapor deposition; optical amplifier; power 130 mW; solution doping process; ternary glass host; wavelength 980 nm; Doping; Glass; Optical amplifiers; Optical fiber amplifiers; Optical fiber dispersion; Preforms; Erbium-doped fiber; Zirconia Yttria Aluminum co-doped fiber; Zirconia???yttria???aluminum co-doped fiber (Zr-EDF); erbium-doped fiber; wideband optical amplifier;
fLanguage :
English
Journal_Title :
Photonics Journal, IEEE
Publisher :
ieee
ISSN :
1943-0655
Type :
jour
DOI :
10.1109/JPHOT.2015.2477899
Filename :
7274637
Link To Document :
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