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Application of nonlinear photonic crystal ring resonators in realizing all optical OR/NOT/AND gates

机译:非线性光子晶体环谐振器在实现所有光学或/不是/和栅极的应用

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摘要

Arithmetic logic unit (ALU) is the core of any digital processing systems. For creating an all optical ALU one needs basic logic gates such as optical NOT, OR and AND gates along with an optical full adder and optical multiplexer. In this paper we aim to design and propose these three basic logic gates using nonlinear photonic crystal ring resonators. The simulations will be done using plane wave expansion and finite difference time domain methods. The proposed structures work based on controlling the optical behavior of the nonlinear resonators using optical power. The simulation results show that the switching threshold for this resonant ring is about 15mW/m(2). Reduced delay times and switching optical power are the main advantages of the proposed structures. Also by adding two resonant rings in input ports we reduced the cross reflection between the input ports.
机译:算术逻辑单元(ALU)是任何数字处理系统的核心。为了创建所有光学ALU,可以使用诸如光学的基本逻辑门,或者和栅极以及光学全加频器和光学多路复用器。在本文中,我们的目标是使用非线性光子晶环谐振器设计和提出这三个基本逻辑门。使用平面波扩展和有限差分时间域方法进行模拟。所提出的结构基于使用光功率控制非线性谐振器的光学行为。仿真结果表明,该谐振环的切换阈值约为15mW / m(2)。降低延迟时间和切换光功率是所提出的结构的主要优点。另外,通过在输入端口中添加两个谐振环,我们减少了输入端口之间的交叉反射。

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