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A proposal for two-input arbitrary Boolean logic gates based on single semiconductor optical amplifier

机译:基于单半导体光放大器的两输入任意布尔逻辑门的建议

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摘要

In this paper, we propose and theoretically demonstrate two-input arbitrary Boolean logic gates using single semiconductor optical amplifier (SOA) and optical filtering at 10Gb/s. The system consists of an SOA and a special-designed optical filter. Before the SOA, there are two input data signals and a probe signal. The data signals should be ultrashort pulse sequence. Because different input power can cause different frequency shifts of the probe signal, different logic gates can be obtained by different filter detuning. Assisted by single Gaussian optical filter, we obtained logic NOR, OR, AND, XOR. Assisted by special filter with double peaks, we obtained logic XNOR and NAND. All the logic gates are obtained by changing the consequent filter only. The bit error rate (BER) measurement is analyzed for all logic gates. Our scheme is quite simple and robust for multifunctional logic gates. These logic gates can be used to the advanced complex logic circuits.
机译:在本文中,我们提出并从理论上证明了使用单半导体光放大器(SOA)和10Gb / s的光学滤波的两输入任意布尔逻辑门。该系统由一个SOA和一个特殊设计的滤光器组成。在SOA之前,有两个输入数据信号和一个探测信号。数据信号应为超短脉冲序列。由于不同的输入功率会导致探测信号发生不同的频移,因此可以通过不同的滤波器失谐获得不同的逻辑门。在单个高斯光学滤波器的辅助下,我们获得了逻辑“或非”,“或”,“与”,“或”的逻辑。在具有双峰的特殊滤波器的辅助下,我们获得了逻辑XNOR和NAND。所有逻辑门仅通过更改相应的滤波器即可获得。分析所有逻辑门的误码率(BER)测量。对于多功能逻辑门,我们的方案非常简单且健壮。这些逻辑门可用于高级复杂逻辑电路。

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