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Logic Gates Based In Two- And Three-modes Nonlinear Optical Fiber Couplers

机译:基于二模和三模非线性光纤耦合器的逻辑门

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In this paper we did a study of logic gates obtained in the operation of a three-core non linear directional coupler (TNLDC) and an asymmetric two-core coupler (DNLDC) operating in the CW regime (the laser signals have the same wavelength). The symmetric three-core coupler (TNLDC), with their cores identical, in a planar arrangement, was studied using a control pulse applied to the first core. The second structure is an asymmetric two-core coupler (DNLDC). 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. For both devices we did a numerical investigation with the objective to implement logic gates. The DNLDC supplied AND, OR and XOR gates while the TNLDC supplied AND, NAND, OR, XOR and NOT gates. In comparing the performance of both switches operating as logic gates (DNLDC and TNLDC) we define, for the first time, a figure-of-merit of the logic gates (FOMELG). In this criteria the FOMELG is defined as a function of the extinction ratio of the gate outputs. Comparing the same gates of the three and two-core NLDC we observe that the logical gates of the three-core TNLDC present a better performance than the one of the two-core DNLDC considering the figure of merit FOMELG, besides the fact that is simpler to fabricate a symmetrical coupler (with identical cores) comparing with an asymmetric coupler. We believe that the use of this figure of merit will be useful in the study of the performance of logic gates to be used in communication systems.
机译:在本文中,我们研究了在三芯非线性定向耦合器(TNLDC)和非对称二芯耦合器(DNLDC)在连续波模式下工作时获得的逻辑门(激光信号具有相同的波长) 。使用施加到第一个磁芯上的控制脉冲研究了对称的三芯耦合器(TNLDC),它们的芯在平面布置中是相同的。第二种结构是非对称两芯耦合器(DNLDC)。通过直接和交叉通道查看设备的传输特性,我们研究了这些设备的消光比(Xratio)。对于这两种设备,我们都进行了数值研究,目的是实现逻辑门。 DNLDC提供AND,OR和XOR门,而TNLDC提供AND,NAND,OR,XOR和NOT门。在比较两个用作逻辑门(DNLDC和TNLDC)的开关的性能时,我们首次定义了逻辑门(FOMELG)的品质因数。在此标准中,将FOMELG定义为门输出消光比的函数。比较三核和两核NLDC的相同门,我们发现,考虑到品质因数FOMELG,三核TNLDC的逻辑门比两核DNLDC的逻辑门表现更好。与非对称耦合器相比,制造对称耦合器(具有相同的芯)。我们认为,使用此品质因数将有助于研究通信系统中使用的逻辑门的性能。

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