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All-optical XOR/XNOR Logic Gate Using Micro-ring Resonators

机译:全光XOR / XNOR逻辑门使用微环谐振器

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Simultaneous logic and its inverse operation in a single circuit is very important and effective research topics in optical computing recently. Many designes have been proposed by many authors in different approach. Among them micro-ring resonator based 'directed logic' circuit is attractive, because it can be easily fabricated in chip level. But most of the proposed logic circuits are based on electrical pumping. To over come the optical-electrical bottleneck here we have used optical pumping rather than electrical. In this literature we proposed two cascaded micro-ring resonator based all optical circuit capable of carrying out simultaneous XOR and XNOR operations. Simulation results confirming described method is also reported. The proposed all- optical logic circuit can be easily extended to n-bit XOR/XNOR circuit which is also shown in this manuscript.
机译:同时逻辑及其在单电路中的逆操作最近是光学计算中的非常重要和有效的研究主题。 许多作者以不同的方法提出了许多设计。 其中基于微环谐振器的“定向逻辑”电路具有吸引力,因为它可以在芯片水平中容易地制造。 但大多数所提出的逻辑电路都基于电泵。 到来,这里的光学电气瓶颈我们使用了光学泵而不是电气。 在该文献中,我们提出了基于两个基于光学电路的级联微环谐振器,其能够进行同时XOR和XNOR操作。 还报道了仿真结果证实描述了方法。 所提出的全光学逻辑电路可以很容易地扩展到N位XOR / XNOR电路,该电路也显示在该稿件中。

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