DocumentCode :
1079967
Title :
Evanescent Multimode Longitudinal Pumping Scheme for Si-Nanocluster Sensitized Er ^{3+} -Doped Waveguide Amplifiers
Author :
Toccafondo, Veronica ; Faralli, Stefano ; Di Pasquale, Fabrizio
Author_Institution :
Scuola Superiore Sant´´Anna, Pisa
Volume :
26
Issue :
21
fYear :
2008
Firstpage :
3584
Lastpage :
3591
Abstract :
We present a multimode longitudinal pumping scheme for integrated rare-earth-doped waveguide amplifiers which allows an efficient use of low cost multimode pump sources. The scheme is based on evanescent pump light coupling from a multimode low loss waveguide to a single mode active core. Multimode pump light is gradually coupled to the active waveguide, which is single mode at the signal wavelengths, providing population inversion along the whole amplifier length and overcoming the main limitation of conventional single mode pump butt-coupling in case of strongly absorbing active materials. We propose this pumping scheme at 477 nm for Si-nanocluster sensitized Erbium doped waveguide amplifiers, in which conventional butt-coupling is inefficient due to the strong pump absorption by the Si- nanoclusters , and top pumping by LED arrays is limited by the low pump intensity values achievable within the active region. The coupling between the multimode waveguide and the active core has been numerically studied for slab waveguide structures using a 2-D split-step finite element method.
Keywords :
elemental semiconductors; erbium; finite element analysis; integrated optics; optical couplers; optical losses; optical pumping; population inversion; silicon; solid lasers; waveguide lasers; 2-D split-step finite element method; JkJk:Er; LED arrays; Si; Si-nanocluster sensitized erbium doped waveguide amplifiers; amplifier length; evanescent pump light coupling; integrated rare-earth-doped waveguide amplifiers; multimode longitudinal pumping scheme; multimode pump sources; population inversion; pump intensity; single mode pump butt-coupling; slab waveguide structures; wavelength 477 nm; Costs; Electromagnetic wave absorption; Erbium; Erbium-doped fiber amplifier; Integrated optics; Laser excitation; Optical amplifiers; Optical coupling; Optical interconnections; Optical waveguides; Erbium; integrated optics; optical amplifier; silicon photonics;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2008.919454
Filename :
4758640
Link To Document :
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