DocumentCode :
799698
Title :
Design of S-Band Erbium-Doped Concentric Dual-Core Photonic Crystal Fiber Amplifiers With ASE Suppression
Author :
Varshney, Shailendra Kumar ; Saitoh, Kunimasa ; Koshiba, Masanori ; Pal, Bishnu P. ; Sinha, Ravindra K.
Author_Institution :
Div. of Media & Network Technol., Hokkaido Univ., Sapporo
Volume :
27
Issue :
11
fYear :
2009
fDate :
6/1/2009 12:00:00 AM
Firstpage :
1725
Lastpage :
1733
Abstract :
In this paper, we theoretically design and numerically demonstrate a large mode area and single-mode erbium-doped photonic crystal fiber (PCF) amplifier operating in the S-band with a complete suppression of amplified spontaneous emission (ASE) and very low Raman gain coefficient at 980-nm pump. The proposed fiber design is based on a dual-concentric core refractive index profile and is solved through full-vectorial finite-element method. Numerical simulations reveal that more than 50 dB of gain can be achieved with a mean gain value of 27 dB over 70-nm bandwidth in a 7.2-m-long fiber. The effect of bending on the amplification characteristics has been noted. It has been shown that by a proper choice of the PCF profile parameters, the fiber amplifier can be made bend-insensitive for a bending radius as small as 5 cm. Further, our design guidelines should be useful to achieve a functional bend-insensitive fiber amplifier, where rack space is a premium and tight bending radius becomes inevitable.
Keywords :
Raman spectra; erbium; finite element analysis; holey fibres; laser beams; optical design techniques; optical fibre amplifiers; optical materials; optical pumping; photonic crystals; refractive index; superradiance; ASE suppression; JkJk:Er; Raman gain coefficient; S-band; amplified spontaneous emission; bend-insensitive fiber amplifier; distance 7.2 m; dual-concentric core refractive index profile; full-vectorial finite-element method; gain 27 dB; optical pumping; photonic crystal fiber amplifier; wavelength 980 nm; Erbium-doped fiber amplifier; S-band; finite-element method; microstructured optical fibers; photonic crystal fibers;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2009.2021991
Filename :
4907097
Link To Document :
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