三角形和平面三芯非线性光纤耦合器(TNLDC)工作逻辑门的数值分析

J. Menezes, W. de Fraga, M. da Silva, A.C. Ferreira, A. Filho, A.F. de Morais Neto, C. Sobrinho, A. Sombra
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引用次数: 2

摘要

在本文中,我们研究了三角形对称和平面对称三芯非线性光纤耦合器(TNLDC)中的开关过程,并通过耦合非线性薛定谔方程(NLSEs)数值表明,三角形TNLDC可以构造逻辑门and, OR和NXOR,而平面TNLDC可以产生逻辑门and, NAND, OR和XOR。我们考虑两个基本模型。第一种是一个三角形对称结构,其中三个芯呈等边三角形排列,并使用应用于第一芯的控制信号(CS),第二种模型呈现一个横向对称结构,其中三个芯呈平行等距排列(或平面对称结构),然而控制信号(CS)的位置应用于第一根光纤(芯1)的输入。通过直接通道和交叉通道,我们对这些器件的消光比(Xratio)进行了研究。在比较作为逻辑门工作的两个开关的性能时,我们将使用逻辑门的优值[FOMELG(dB)]定义为门输出消光比的函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical analysis in triangular and planar three-core nonlinear optical fiber couplers (TNLDC) operating logical gates
In this paper, we investigate the switching process in triangular symmetric and planar symmetric three-core nonlinear fiber coupler (TNLDC) and we have numerically shown, via the coupled nonlinear Schrodinger equations (NLSEs), that logic gates AND, OR and NXOR can be constructed from a triangular TNLDC while the planar TNLDC produced logical gates AND, NAND, OR, and XOR. We consider two basic models. The first, one triangular symmetrical structure with three cores in an equilateral-triangle arrangement and using a control signal (CS) applied to the first core and the second model present a transverse symmetrical structure with three cores in a parallel equidistant arrangement (or planar symmetrical structure), however the position of the control signal (CS) is applied to the input of the first fiber (core 1). Looking at the transmission characteristics of the device, through the direct and cross channel, we did a study of the extinction ratio (Xratio) of these devices. In comparing the performance of both switches operating as logic gates we will use the figure-of-merit of the logic gates [FOMELG(dB)] defined as a function of the extinction ratio of the gate outputs.
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