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Semiconductor optical amplifier based nonlinear optical loop mirror with feedback

机译:基于半导体光放大器的非线性光学回路镜,具有反馈

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The behavior of a semiconductor optical amplifier (SOA)-based nonlinear loop mirror with feedback has been investigated as a potential device for all-optical signal processing. In the feedback device, input signal pulses ('ones') are injected into the loop, and amplified reflected pulses are fed back into the loop as switching pulses. The feedback device has two stable modes of operation - block mode, where alternating blocks of 'ones' and 'zeros' are observed, and spontaneous clock division mode, where halving of the input repetition rate is achieved. Improved models of the feedback device have been developed to study its performance in different operating conditions. The feedback device could be optimized to give a choice of either of the two stable modes by shifting the arrival time of the switching pulses at the SOA. Theoretically, it was found possible to operate the device at only tens of fJ switching pulse energies if the SOA is biased to produce very high gain in the presence of internal loss. The clock division regime arises from the combination of incomplete SOA gain recovery and memory of the startup sequence that is provided by the feedback. Clock division requires a sufficiently high differential phase shift per unit differential gain, which is related to the SOA linewidth enhancement factor.
机译:已经研究了具有反馈的半导体光放大器(SOA)的非线性环形镜的行为作为全光信号处理的潜在装置。在反馈设备中,将输入信号脉冲('oon')注入回路中,并将放大的反射脉冲馈回作为切换脉冲。反馈设备具有两个稳定的操作模式 - 块模式,其中观察到“零”和自发时钟分割模式的交替块,其中实现了输入重复率的减半。已经开发出改进的反馈设备模型以研究其在不同的操作条件下的性能。可以优化反馈设备,以通过将开关脉冲的到达时间转移在SOA处的到达时间来提供两个稳定模式的选择。理论上,如果SOA被偏置在存在内部损耗的情况下,则发现在仅几十的FJ切换脉冲能量下仅操作该设备以产生非常高的增益。时钟划分状态从不完整的SOA增益恢复和通过反馈提供的启动序列的存储器的组合产生。时钟划分需要每单位差分增益具有足够高的差分相位偏移,这与SOA线宽增强因子有关。

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