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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Protection of surviving channels in all-optical gain-clamped lumped Raman fibre amplifier: modelling and experimentation
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Protection of surviving channels in all-optical gain-clamped lumped Raman fibre amplifier: modelling and experimentation

机译:全光增益钳位集总拉曼光纤放大器中幸存通道的保护:建模和实验

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摘要

In this article we investigate, both theoretically and experimentally, suppression of transient effects in all-optical gain-clamped (AOGC) lumped Raman fibre amplifiers (RFA) caused by channel addition/removal. Theoretical analysis of the AOGC lumped RFA is based on numerical solution of coupled propagation equations for forward and backward propagating pumps, signals and spectral components of amplified spontaneous emission powers. In experimental verification, channel addition/removal was simulated by transmitting signals of two lasers through a counter-directionally pumped RFA consisting of 16 km of dispersion compensating fibre (DCF). Light of one of the lasers was square-wave modulated at 500 Hz, power fluctuations of the other laser caused by cross-gain modulation of the RFA were monitored at the output of the amplifier with a digital oscilloscope. All-optical feedback loop was implemented in the form of a ring laser.
机译:在本文中,我们在理论上和实验上都研究了抑制由于添加/删除通道而导致的全光增益钳位(AOGC)集总拉曼光纤放大器(RFA)的瞬态效应的问题。 AOGC集总RFA的理论分析是基于前向和后向传播泵的耦合传播方程,放大后的自发发射功率的信号和频谱分量的数值解。在实验验证中,通过将两个激光的信号通过由16 km的色散补偿光纤(DCF)组成的反向泵浦的RFA进行传输,来模拟通道的添加/删除。其中一个激光器的光以500 Hz进行方波调制,由另一个示波器的RFA的交叉增益调制引起的功率波动在数字示波器的放大器输出端进行监控。全光反馈环路以环形激光器的形式实现。

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