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 >Impact of the all-optical gain-clamping technique on the transience characteristics of cascaded discrete fiber Raman amplifiers
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Impact of the all-optical gain-clamping technique on the transience characteristics of cascaded discrete fiber Raman amplifiers

机译:全光增益钳制技术对级联离散光纤拉曼放大器瞬态特性的影响

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摘要

We theoretically analyse the dynamic response of amplifier cascades involving combinations of unclamped and gain-clamped discrete fiber Raman amplifiers (DFRAs) in the worst possible case of power transients. We consider a 64-channel system in which all of the channels except one (i.e. the surviving channel) are modulated to simulate channel add/drop. We vary the number and the position of the gain-clamped DFRAs in the cascade to determine whether a cascade in which only a few amplifiers are gain-clamped (referred to as a mixed cascade) can be as effective as a cascade comprising all gain-clamped amplifiers for controlling the power transients within tolerable limits (for example, 1 dB). We take into account the location of the surviving channel and the operational regime of the amplifiers. Our results show that the location of the gain-clamped DFRAs in a mixed cascade affects the transient characteristics and that it is possible to control the transients within tolerable limits.
机译:我们从理论上分析了在功率瞬变的最坏情况下,放大器级联的动态响应,其中包括未钳位和增益钳位的离散光纤拉曼放大器(DFRA)的组合。我们考虑一种64通道系统,其中除一个通道(即幸存通道)以外的所有通道都经过调制以模拟通道添加/删除。我们改变级联中增益钳位的DFRA的数量和位置,以确定级联中只有几个放大器被增益钳位的级联(称为混合级联)是否可以和包括所有增益级的级联一样有效。钳位放大器,用于将功率瞬变控制在允许的范围内(例如1 dB)。我们考虑了幸存通道的位置和放大器的工作机制。我们的结果表明,混合级联中的钳位增益DFRA的位置会影响瞬态特性,并且有可能将瞬态控制在可容忍的范围内。

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