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Design of double-clad erbium-doped holey fiber amplifier

机译:双包掺hole多孔光纤放大器的设计

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摘要

The design of an erbium-doped, double cladding, large mode area-holey fiber (LMA-HF) amplifiers is given. An improvement of the pump power absorption is achieved by employing a suitable hexagonal shaped, microstructured, inner cladding. The electromagnetic investigation on the fiber section is performed via a finite element method (FEM) routine, while a comprehensive numerical model for Er3+-doped fiber amplifiers is implemented in a home-made computer code to evaluate the gain characteristics, it being based on the optical power propagation and the population rate equations. In the simulations, the hole configuration, the fiber section the length, the erbium concentration, the signal and the pump input power are varied to optimize the amplifier performance. The results of the simulation suggest the following numerical values: erbium concentration, N-Eropt = 3 x 10(24) [ions/m(3)], fiber length, L-opt = 49 m, pump power, P-p(0) = 3 W, signal power, P-s(0) = 100 mu W, allowing to obtain optimal amplifier performance, i.e. a gain G congruent to 31 dB. (c) 2005 Elsevier B.V. All rights reserved.
机译:给出了掺双包层大面积面积多孔光纤(LMA-HF)放大器的设计。通过采用合适的六角形,微结构化的内包层,可以改善泵的功率吸收。光纤截面的电磁研究是通过有限元方法(FEM)程序进行的,而掺Er3 +光纤放大器的综合数值模型是在自制的计算机代码中实现的,以评估增益特性,该模型基于光功率传播和人口率方程。在仿真中,改变孔的配置,光纤截面的长度,the浓度,信号和泵浦输入功率,以优化放大器性能。仿真结果表明以下数值:浓度,N-Eropt = 3 x 10(24)[ions / m(3)],纤维长度,L-opt = 49 m,泵浦功率,Pp(0) = 3 W,信号功率Ps(0)= 100μW,从而可以获得最佳的放大器性能,即增益G等于31 dB。 (c)2005 Elsevier B.V.保留所有权利。

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