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首页> 外文期刊>Photonics >Design an All-Optical Combinational Logic Circuits Based on Nano-Ring Insulator-Metal-Insulator Plasmonic Waveguides
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Design an All-Optical Combinational Logic Circuits Based on Nano-Ring Insulator-Metal-Insulator Plasmonic Waveguides

机译:基于纳米环绝缘子-金属绝缘子等离子波导管设计全光组合逻辑电路

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In this paper, we propose, analyze and simulate a new configuration to simulate all-optical combinational logic functions based on Nano-rings insulator-metal-insulator (IMI) plasmonic waveguides. We used Finite Element Method (FEM) to analyze the proposed plasmonic combinational logic functions. The analyzed combinational logic functions are Half-Adder, Full-Adder, Half-Subtractor, and Comparator One-Bit. The operation principle of these combinational logic functions is based on the constructive and destructive interferences between the input signal(s) and control signal. Numerical simulations show that a transmission threshold exists (0.25) which allows all proposed four plasmonic combinational logic functions to be achieved in one structure. As a result, the transmission threshold value measures the performance of the proposed plasmonic combinational logic functions. We use the same structure with the same dimensions at 1550 nm wavelength for all proposed plasmonic combinational logic functions. The proposed all-optical combinational logic functions structure contributes significantly to photonic integrated circuits construction and all-optical signal processing nano-circuits.
机译:在本文中,我们提出,分析和模拟了一种新的配置,以基于纳米环绝缘子-金属-绝缘子(IMI)等离子体激元波导来模拟全光组合逻辑功能。我们使用有限元方法(FEM)分析了提出的等离激元组合逻辑函数。分析的组合逻辑功能是半加器,全加器,半减器和比较器一位。这些组合逻辑功能的操作原理基于输入信号和控制信号之间的相长和相消干扰。数值模拟表明存在一个传输阈值(0.25),该阈值允许在一个结构中实现所有建议的四个等离激元组合逻辑功能。结果,传输阈值测量了所提出的等离子体组合逻辑功能的性能。对于所有建议的等离激元组合逻辑函数,我们在1550 nm波长处使用具有相同尺寸的相同结构。所提出的全光组合逻辑功能结构对光子集成电路的构建和全光信号处理纳米电路的贡献很大。

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