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Telecommunication fiber OPA analysis, project and characterization

机译:电信光纤OPA分析,项目和表征

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摘要

Extremely high is nowadays researchers' interest towards amplification techniques alternative to Erbium Doped Fiber Amplifiers (EDFA); driving force is the exploitation of new and larger fiber optic communication bandwidths. While EDFA gain relies on population inversion in an active material and thus amplification bandwidth is directly related to the doping ion energy levels, well known effects such as Raman and third order nonlinear susceptibility in optical fiber allow amplification not subject to this constraint. In optical parametric amplification, in particular, bandwidth shape and spectral collocation are determined by the choice of pump wavelength and power. Thus almost every spectral region can be reached provided that proper pump is available. We present a detailed analysis of optical parametric amplification in standard communication fiber, discussing different operation regime according to pump wavelength placement with respect to fiber zero dispersion wavelength. In particular attention is paid to the optical parametric amplifier gain bandwidth and saturation. We evidence that a key OPA project parameter is the relative phase between interacting waves, i.e. pump, signal and idler. This parameter not only allows comprehension of gain dynamics in the amplifier, but also can be controlled by engineering the nonlinear medium to improve OPA performances. Experimental verifications are also presented to validate the proposed analysis.
机译:如今,研究人员对替代掺Do光纤放大器(EDFA)的放大技术的兴趣非常高。驱动力是对新的和更大的光纤通信带宽的利用。尽管EDFA增益依赖于活性材料中的粒子数反转,因此放大带宽与掺杂离子能级直接相关,但众所周知的效应(如拉曼和光纤中的三阶非线性磁化率)使放大不受此约束。特别是在光学参量放大中,带宽形状和光谱搭配取决于泵浦波长和功率的选择。因此,只要有合适的泵浦,几乎可以达到每个光谱区域。我们对标准通信光纤中的光参量放大进行了详细的分析,讨论了根据泵浦波长相对于光纤零色散波长的不同工作方式。特别要注意光参量放大器的增益带宽和饱和度。我们证明关键的OPA项目参数是相互作用的波之间的相对相位,即泵,信号和惰轮之间的相对相位。该参数不仅可以理解放大器中的增益动态,而且可以通过设计非线性介质来控制它以提高OPA性能。还提出了实验验证以验证所提出的分析。

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