Erbium-doped hole-assisted optical fiber amplifier: Design and optimization

被引:28
作者
Prudenzano, F [1 ]
机构
[1] Politecn Bari, Fac Ingn 2, Dipartimento Ingn Ambiente & Sviluppo Sostenibile, I-74100 Taranto, Italy
关键词
amplifiers; finite element method; modeling; optical waveguides; photonic crystal fibers (PCFs); rate equations;
D O I
10.1109/JLT.2004.838808
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
An erbium-doped hole-assisted optical fiber amplifier, to be employed in the third band of the optical communications, is designed and optimized via a tailor made computer code. The finite element method is used for the electromagnetic investigation of the microstructured fiber section. The simulation model takes into account all the rare earth physical phenomena, i.e., the pump and signal propagation, the amplified spontaneous emission, the secondary transitions pertaining to the ion-ion interactions, and so on. The device feasibility is tested via a number of simulations, realistically performed by taking into account the actual parameters pertaining to the dispersion of the germania/silica. glass, the erbium emission and absorption cross sections, the propagation losses. By simulation, in the small signal operation, a gain close to 42.8 dB is demonstrated for a fiber 13-m long, using a pump power of 50 mW at the signal wavelength lambda(s) = 1536 nm, the pump and the signal being copropagating.
引用
收藏
页码:330 / 340
页数:11
相关论文
共 28 条
[1]   ABSORPTION AND EMISSION CROSS-SECTION OF ER3+ DOPED SILICA FIBERS [J].
BARNES, WL ;
LAMING, RI ;
TARBOX, EJ ;
MORKEL, PR .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1991, 27 (04) :1004-1010
[2]   Endlessly single-mode photonic crystal fiber [J].
Birks, TA ;
Knight, JC ;
Russell, PS .
OPTICS LETTERS, 1997, 22 (13) :961-963
[3]   FULL 2-D PHOTONIC BANDGAPS IN SILICA/AIR STRUCTURES [J].
BIRKS, TA ;
ROBERTS, PJ ;
RUSSEL, PSJ ;
ATKIN, DM ;
SHEPHERD, TJ .
ELECTRONICS LETTERS, 1995, 31 (22) :1941-1943
[4]  
BJARKLEV A, 1993, OPTICAL FIBER AMPLIF, P77
[5]   CONCENTRATION-DEPENDENT UPCONVERSION IN ER3+-DOPED FIBER AMPLIFIERS - EXPERIMENTS AND MODELING [J].
BLIXT, P ;
NILSSON, J ;
CARLNAS, T ;
JASKORZYNSKA, B .
IEEE PHOTONICS TECHNOLOGY LETTERS, 1991, 3 (11) :996-998
[6]   CONCENTRATION-DEPENDENT ENERGY-TRANSFER PROCESSES IN ER-3+-DOPED AND TM-3+-DOPED HEAVY-METAL FLUORIDE GLASS [J].
CHEN, CY ;
PETRIN, RR ;
YEH, DC ;
SIBLEY, WA ;
ADAM, JL .
OPTICS LETTERS, 1989, 14 (09) :432-434
[7]   Er3+-doped channel optical waveguide amplifiers for WDM systems:: A comparison of tellurite, alumina and Al/P silicate materials [J].
Chryssou, CE ;
Di Pasquale, F ;
Pitt, CW .
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2000, 6 (01) :114-121
[8]   Amplification properties of Er3+-doped photonic crystal fibers [J].
Cucinotta, A ;
Poli, F ;
Selleri, S ;
Vincetti, L ;
Zoboli, M .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 2003, 21 (03) :782-788
[9]   Design of Er3+ doped SiO2-TiO2 planar waveguide amplifier [J].
D'Orazio, A ;
De Sario, M ;
Mescia, L ;
Petruzzelli, V ;
Prudenzano, F ;
Chiasera, A ;
Montagna, M ;
Tosello, C ;
Ferrari, M .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 2003, 322 (1-3) :278-283
[10]  
DESURVIRE E, 1993, ERBIUM DOPED FIBER A, P354