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High-speed header processing using synchronized fiber lasers driving all-optic logic gates

机译:使用同步光纤激光器驱动全光逻辑门进行高速头处理

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We show all-optic logic gates driven by synchronized erbium-doped fiber lasers (EDFLs) to perform 100 Gb/s header processing in TDM packetized networks or optical add/drop multiplexers. We experimentally demonstrate AND and XOR logic functions in low-birefringent nonlinear optical loop mirrors (Low-Bi-NOLMs) with switching energy as low as 9 pJ and peak switching contrast of 8:1. We show that the Low-Bi-NOLMs satisfy decision-making capabilities in a header processor such as cascadability and Boolean-complete logic functions. Our novel AOM-grating scheme of synchronization provides 30 times the length and 10 times the bandwidth as compared to the scheme using piezo-electric transducers (PZTs). We have achieved synchronization of two passively mode-locked EDFLs with a timing jitter of approximately 1.3 times the pulse width. We are now integrating the synchronized EDFLs and all-optic logic gates, which are key components for packet addressing for 100 Gb/s applications.
机译:我们展示了由同步掺-光纤激光器(EDFL)驱动的全光逻辑门,以在TDM分组网络或光分插复用器中执行100 Gb / s标头处理。我们通过实验证明了低双折射非线性光学环路镜(Low-Bi-NOLM)中的AND和XOR逻辑功能,其开关能量低至9 pJ,峰值开关对比度为8:1。我们显示,低级Bi-NOLM满足标头处理器中的决策能力,例如级联性和布尔完全逻辑功能。与使用压电换能器(PZT)的方案相比,我们新颖的AOM光栅同步方案可提供30倍的长度和10倍的带宽。我们已经实现了两个被动锁模EDFL的同步,其定时抖动约为脉冲宽度的1.3倍。现在,我们正在集成同步EDFL和全光逻辑门,这是用于100 Gb / s应用的数据包寻址的关键组件。

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