Author:
jasim Wissam Abed,Ali Faris Mohammed,Abdullah Ahmed Kareem,AbdulNabi Mohammed Ahmed
Abstract
Abstract
In the field of optics the tinier devices are the better; therefore, the diffraction limit of light seems like an essential limitation in the way of that field. In return, new methods have appeared to resolve this issue. One of these methods is the plasmonic technology which allows light pressure into nanostructures. The current study proposes all-optical logic gates based on metal insulator metal structures (mim) waveguide. This waveguide has an important characteristic which is restricting the applied light strongly far from the diffraction limit. The proposed structure is small compared to the applied wavelength. The optical plasmonic gates proposed are (OR, NOR, AND, NAND, NOT). The comsol multiphysics 5.5 software was used for simulation by the 2-D FDTD method. Hence, these five gates will be obtained by optical interference between the propagating signals through the input ports and the control ports, whose positions can be altered according to the gate needed. The implementation and simulation of the proposed gates were all in the same structure, with the same dimensions, the same wavelength and the same transmission threshold, with applicable wavelength of (1550 nm). The performance of the proposed plasmonic gates was tested by two criteria; the optical transmission ratio and the contrast ratio, which is the ratio between the ON and OFF states of the proposed gate..
Subject
General Physics and Astronomy
Reference55 articles.
1. Angiotensin-converting enzyme 2 (ACE2) mediates influenza H7N9 virus-induced acute lung injury;Yang;Scientific reports,2014
2. High-order all-optical differential equation solver based on microring resonators;Tan;Optics letters,2013
3. Analog computing using reflective plasmonic metasurfaces;Pors;Nano letters,2015
4. High-speed all-optical differentiator based on a semiconductor optical amplifier and an optical filter;Jing;Optics letters
5. Ultrafast analog all-optical signal processors based on fiber-grating devices;José
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献