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Simultaneous implementation of all-optical OR and AND logic gates for NRZ/RZ/CSRZ ON-OFF-keying signals

机译:NRZ / RZ / CSRZ ON-OFF键控信号的全光OR和AND逻辑门的同时实现

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摘要

An all-optical scheme for simultaneously realizing OR and AND logic gates based on three-input four-wave mixing (FWM) arising in a single semiconductor optical amplifier (SOA) is proposed and demonstrated. It has the ability to process not only conventional non-return-to-zero-ON-OFF-keying (NRZ-OOK) and return-to-zero-OOK (RZ-OOK) formats but also carrier-suppressed return-to-zero-OOK (CSRZ-OOK) format signals. Firstly, the performance of 40 Gb/s logic operation is numerically evaluated by a comprehensive dynamic SOA model considering three input signal induced FWM effect. Then, 10 Gb/s experimental demonstrations with clear waveforms and high extinction ratios (ERs) further verify the logic integrity of this scheme. Thus, the OR and AND logic gates simultaneously achieved within a single logic unit is compact and cost-effective for future optical signal processing applications.
机译:提出并演示了基于单个半导体光放大器(SOA)中出现的三输入四波混频(FWM)同时实现OR和AND逻辑门的全光方案。它不仅能够处理传统的非归零开关键控(NRZ-OOK)和归零归零(RZ-OOK)格式,而且还能够处理载波抑制的归零。零-OOK(CSRZ-OOK)格式信号。首先,通过考虑三个输入信号引起的FWM效应的综合动态SOA模型,以数字方式评估40 Gb / s逻辑运算的性能。然后,具有清晰波形和高消光比(ER)的10 Gb / s实验演示进一步验证了该方案的逻辑完整性。因此,对于未来的光信号处理应用,在单个逻辑单元内同时实现的“或”和“与”逻辑门是紧凑的且具有成本效益。

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