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Ultra-High bit rate all-optical AND/OR logic gates based on photonic crystal with multi-wavelength simultaneous operation

机译:超高比特率全光和/或逻辑门基于光子晶体,具有多波长同时操作

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In this paper, a novel two-dimensional photonic crystal based all-optical AND/OR logic gates are designed, simulated and optimized. The structure is built on a linear square lattice photonic crystal platform. A multi-wavelength operation, together with a simultaneous operation, is achieved at ultra-high bit rates. The concurrent operation is attained without altering the proposed design continuously, as stated in the literature. It provides simplicity because there is no auxiliary input required along with the absence of externally attached phase shift units. The enhancement process has been done to the rod radius. A magnificent representation tool is developed. The benefit of the mentioned tool lies in the data combination of different operating wavelengths, contrast ratio, and bit rate; which will establish an efficient optimization process. Each gate is enhanced independently, then an overall improvement has been done. As a result, the operation at 1.52 mu m will provide a successful multi logic gate operation with ultra-high bit rates of 6.76 and 4.74 Tbit/s for AND and OR logic gates, respectively. The design has an acceptable size of (19.8x12.6 mu m) and a contrast ratio of 9.74dB and 17.95dB for the designed AND and OR gate, respectively. The design is highly sensitive to the waveguide length to verify the gates on demand.
机译:本文设计了一种新的二维光子晶体基于光学和/或逻辑门,设计,模拟和优化。该结构基于线性方形格子光子晶体平台构建。以超高比特率实现多波长操作与同时操作一起实现。如在文献中所述,在不连续改变所提出的设计的情况下实现并发操作。它提供了简单性,因为没有所需的辅助输入以及没有外部附加的相移单元。增强过程已经在杆半径上完成。开发了一个壮观的表示工具。提到的工具的好处在于不同的操作波长,对比度和比特率的数据组合;这将建立有效的优化过程。每个栅极都是独立增强的,然后完成了整体改进。结果,1.52μm的操作将分别提供具有6.76和4.74 Tbit / s的超高比特率的成功的多逻辑栅极操作,分别为和和或逻辑门。该设计分别具有(19.8x12.6 mu m)的可接受尺寸,为设计的和或门和17.95dB的对比度为9.74dB和17.95dB。该设计对波导长度非常敏感,以验证栅极按需。

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