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Ultrafast nonlinear interferometer (UNI)-based digital optical circuits and their use in packet switching

机译:基于超快非线性干涉仪(UNI)的数字光路及其在分组交换中的应用

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Digital optical logic circuits capable of performing bit-wise signal processing are critical building blocks for the realization of future high-speed packet-switched networks. In this paper, we present recent advances in all-optical processing circuits and examine the potential of their integration into a system environment. On this concept, we demonstrate serial all-optical Boolean AND/XOR logic at 20 Gb/s and a novel all-optical packet clock recovery circuit, with low capturing time, suitable for burst-mode traffic. The circuits use the semiconductor-based ultrafast nonlinear interferometer (UNI) as the nonlinear switching element. We also present the integration of these circuits in a more complex unit that performs header and payload separation from short synchronous data packets at 10 Gb/s. Finally, we discuss a method to realize a novel packet scheduling switch architecture, which guarantees lossless communication for specific traffic burstiness constraints, using these logic units.
机译:能够执行按位信号处理的数字光逻辑电路是实现未来高速分组交换网络的关键组成部分。在本文中,我们介绍了全光处理电路的最新进展,并研究了将其集成到系统环境中的潜力。在这个概念上,我们演示了20 Gb / s的串行全光布尔AND / XOR逻辑和一种新颖的全光分组时钟恢复电路,具有较短的捕获时间,适用于突发模式流量。电路使用基于半导体的超快非线性干涉仪(UNI)作为非线性开关元件。我们还将这些电路集成在一个更复杂的单元中,该单元以10 Gb / s的速度从短同步数据包中进行报头和有效负载分离。最后,我们讨论了一种使用这些逻辑单元实现新颖的分组调度交换体系结构的方法,该体系结构可确保针对特定流量突发性约束的无损通信。

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