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Realization of all-optical NOT and XOR logic gates based on interference effect with high contrast ratio and ultra-compacted size

机译:基于具有高对比度和超紧凑尺寸的干涉效应,实现全光NOT和XOR逻辑门

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摘要

In this paper, an ultra-compact structure is presented for realization of all-optical NOT and XOR logic gates which can be compatible with silicon technology. Logic gates are based on two-dimensional photonic crystals, and the lattice constant and the radius of the rods are selected in such a way in order to operate the logic gates at 1550 nm. The proposed structure consists of three waveguides which are connected to each other using a T-shaped junction. This structure is optimized by two nano-resonators and has also two input ports and one output port. For our numerical studies, the plane-wave expansion and finite-difference time-domain methods have been used. The contrast ratios for the proposed all optical NOT and XOR logic gates are respectively 43.40 and 43.38 dB. The response time of the logic gates is 0.37 ps, which in turn creates a data transmission rate of 3.15 Tb/s. Our studies have shown that the NOT-designed logic gate is suitable for the use in optical integrated circuits.
机译:本文提出了一种超紧凑结构,用于实现可与硅技术兼容的全光NOT和XOR逻辑门。逻辑门基于二维光子晶体,并且以这种方式选择晶格常数和棒的半径,以便在1550 nm处操作逻辑门。所提出的结构由三个通过T形结相互连接的波导组成。该结构通过两个纳米谐振器进行了优化,并且还具有两个输入端口和一个输出端口。对于我们的数值研究,已经使用了平面波扩展和时域有限差分方法。提议的所有光学NOT和XOR逻辑门的对比度分别为43.40和43.38 dB。逻辑门的响应时间为0.37 ps,从而产生了3.15 Tb / s的数据传输速率。我们的研究表明,NOT设计的逻辑门适用于光集成电路。

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