采用半导体光放大器和全光逻辑门的全光全加法器和全减法器

Pujit Kumar Nahata, Ashad Ahmed, S. Yadav, Nivedita Nair, Sanmukh Kaur
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引用次数: 2

摘要

在光信号处理和光通信网络中,光放大器为设计和集成光器件提供了一种更有效、更稳健、更好的选择。在光链路中使用光放大器主要有三种最常见的方式。有许多类型的光放大器,其中之一是半导体光放大器(SOA)。SOA的工作就像LASER一样,LASER和SOA之间唯一的区别是后者没有前者那样的反馈机制。受激发射引起入射光波的放大。为了利用光介质的非线性特性,在这项工作中使用了一种称为交叉相位调制的效应。交叉相位调制发生在两个或多个光场同时通过同一光介质时,由于一个光场的折射率变化引起其他光场的相位调制。这种现象被广泛用于检测和研究所考虑的链路或光介质的非线性特性。在这项工作中,我们提出了全加法器和全减法器电路的原理图。我们提供了两个独立的电路设计,其中第一个是和/差原理图,第二个是进位/借。考虑到输入序列为10位,我们在optisystem16研究软件中模拟了我们的方案设计。这些意见已列入结果一节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
All optical Full-Adder and Full-Subtractor using Semiconductor Optical Amplifiers and All-Optical Logic Gates
Optical Amplifiers have provided a more efficient robust and better alternative to design and integrate optical devices feasibly with traditional optical networks and systems for optical signal processing and optical communication networks. There are mainly three most common ways in which an optical amplifier may be used in an optical link. There are many types of optical amplifiers available one of which is the Semiconductor optical amplifier (SOA). The working of an SOA is just like that of a LASER, the only difference between a LASER and an SOA is that the later doesn’t have feedback mechanism as present in the case of former. Stimulated emission causes the amplification of entering light waves. An effect known as Cross phase modulation has been utilized in this work in order to exploit the non-linear properties of optical medium. Cross phase modulation takes place when two or more optical fields pass through the same optical medium simultaneously, the change in refractive index due to one optical field causes phase modulation of the other optical fields. This phenomenon is widely used to detect and study the non-linear properties of the link or the optical medium under consideration.In this work we have proposed schematics for full-adder and full-subtractor circuits. We have provided two separate circuit designs which has the schematic of Sum/Difference in the first one and Carry/Borrow in the second. Considering an input sequence of 10 bits we have simulated our schematic designs in OptiSystem 16 research software. The observations have been incorporated in the results section.
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