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Investigation of tandem 980nm recycled erbium amplifier pump topologies

机译:串联980nm再生铒放大器泵拓扑研究

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In this paper we study tbe design and performance of 980 run single pumped tandem Recycled Erbium Amplifier Pump (REAP) configurations. These configurations feature high gain (>40 dB) and low noise figure (3 dB) using an isolator incorporated in the amplifier length to block backward traveling amplified spontaneous emission (ASE) from degrading the amplifier performance. In particular, we investigate theoretically the trade offs between gain and noise figure and their dependency on fiber length, signal level and pump power. First, using the ratio between first stage length and total amplifier length as a figure of merit, we determine the optimum position of the isolator to achieve a combination of high gain and low noise figure, for constant levels of pump power in the small signal regime. Then, we calculate tbe amplifier performance for applications as power booster, in-line amplifier and preamplifier.
机译:在本文中,我们研究了980次运行单泵串联再生铒放大器泵(REAP)配置的设计和性能。这些配置使用在放大器长度中的隔离器具有高增益(> 40dB)和低噪声图(3 dB),以阻止向后行驶放大的自发发射(ASE)从降低放大器性能。特别是,我们从理论上调查了增益和噪声系数之间的贸易和对光纤长度,信号电平和泵电量之间的依赖性。首先,使用第一级长度和总放大器长度之间的比率作为优点的数字,确定隔离器的最佳位置,实现高增益和低噪声系数的组合,用于小信号制度的恒定泵电量的恒定水平。然后,我们计算用于电源升压,在线放大器和前置放大器的应用的TBE放大器性能。

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