首页> 外文期刊>IEEE Photonics Technology Letters >Temperature dependence of a 1300 nm polarization-insensitive multiple quantum well laser amplifier and its implications for the ultimate capacity of cascaded amplifier systems
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Temperature dependence of a 1300 nm polarization-insensitive multiple quantum well laser amplifier and its implications for the ultimate capacity of cascaded amplifier systems

机译:1300 nm偏振不敏感的多量子阱激光放大器的温度依赖性及其对级联放大器系统极限容量的影响

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摘要

The temperature characteristics of a 1300 nm polarization-insensitive multiple quantum well laser amplifer are investigated at a constant level of the amplified spontaneous emission. Upon increasing the amplifier temperature from O/spl deg/C to 40/spl deg/C, a 20% increase in the gain bandwidth and a twofold increase in the saturation output power, due to an increase in Auger recombination, are observed. The implications of these results on the ultimate capacity of cascaded amplifier systems is evaluated using the concept of the maximum length amplifier cascade. When operated at 40/spl deg/C, this length extends to 6000 km, which is of great relevance for the design of 1300 mm soliton systems, because these short pulses are considered to be able to traverse these large lengths of optical fiber without distortion.
机译:在恒定的放大自发发射水平下研究了1300 nm偏振不敏感的多量子阱激光放大器的温度特性。当放大器温度从O / spl deg / C增加到40 / spl deg / C时,由于俄歇复合的增加,观察到增益带宽增加20%,饱和输出功率增加两倍。使用最大长度放大器级联的概念评估了这些结果对级联放大器系统极限容量的影响。当在40 / spl deg / C下运行时,此长度会扩展到6000 km,这对于1300 mm孤子系统的设计非常重要,因为这些短脉冲被认为能够穿过这些大长度的光纤而不会失真。

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