掺铥双包层光纤放大器的理论建模与仿真

Qijie Huang, T. Yu, Jifeng Zu, M. Tao
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引用次数: 4

摘要

基于有限差分法,通过速率方程和传播方程对典型掺铥双包层光纤放大器的建模进行了全面分析。讨论了放大自发辐射(ASE)、种子波长和功率、光纤长度、泵浦功率和光纤面反射率等影响因素。仿真结果表明,存在最合适的光纤长度和泵浦功率,同时放大器具有最大输出功率和最佳信噪比。此外,通过降低光纤面反射率,特别是前光纤面反射率,选择合适的种子波长和增加种子功率,可以有效地抑制ASE的影响。本文所建立的理论模型和仿真结果对大功率掺铥双包层光纤放大器的设计和研制具有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical modeling and simulation of Tm-doped double-clad fiber amplifier
Based on the finite-difference method, a typical Tm-doped double-clad fiber amplifier modeling is comprehensively analyzed through the rate equations and propagation equations. The impacting factors such as amplified spontaneous emission (ASE), wavelength and power of the seed, fiber length, pumping power and fiber facet reflectivity are discussed. Simulation results show that there exist the most suitable fiber length and pump power while the amplifier has the maximum output power and the best signal to noise ratio. Moreover, the influence of ASE can be effectively inhibited by reducing the fiber facet reflectivity, especially the front fiber facet reflectivity, choosing the proper seed wavelength and increasing the seed power. The theoretical models and simulation results presented in this paper have a certain reference value for the design and development of high-power Tm-doped double-clad fiber amplifiers.
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