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1 Tb/s all-optical XOR and AND gates using quantum-dot semiconductor optical amplifier-based turbo-switched Mach-Zehnder interferometer

机译:使用量子点半导体光学放大器的涡轮交换马赫德干涉仪1 TB / S全光XOR和栅极

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摘要

The turbo-switch (TS) architecture conceived for speeding up the response of conventional semiconductor optical amplifiers (SOAs) is combined for the first time with the exceptional ultrafast capability of quantum-dot (QD) SOAs. The possibility of exploiting this combination in the Mach-Zehnder interferometer (MZI) for implementing fundamental all-optical (AO) XOR and AND logic gates run at 1Tb/s is numerically investigated, assessed, and verified. The simulation results demonstrate the superiority of the QDSOA-based TS-MZI scheme over its QDSOA-based MZI counterpart, as quantified by the improved quality factor, which can be achieved under more favorable operating conditions. The outcomes of the conducted theoretical treatment can help execute AO signal processing tasks with enhanced performance while keeping pace with the perpetual increase of single-channel data rates in an efficient and affordable manner.
机译:所设想用于加速传统半导体光放大器(SOA)响应的涡轮开关(TS)架构首次使用量子点(QD)SOA的卓越超快能力组合。在Mach-Zehnder干涉仪(MZI)中利用这种组合的可能性用于实现基本的全光(AO)XOR和1TB / s在1TB / s的逻辑门中进行数值研究,评估和验证。仿真结果证明了基于QDSOA的基于QDSOA的MZI对应物的优越性,通过改进的质量因子量化,这可以在更有利的操作条件下实现。进行的理论处理的结果可以帮助执行具有增强性能的AO信号处理任务,同时以高效且实惠的方式保持与单通道数据速率的永久增加的步伐。

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