Design of One-Bit Magnitude Comparator using Photonic Crystals

Author:

Rathi Sapna,Swarnakar Sandip,Kumar Santosh

Abstract

Abstract At present, photonic crystals (PhCs) are used to design various combinational and sequential circuits. In this paper, an all-optical one-bit magnitude comparator is proposed using PhC waveguide without using nonlinear material. It is based on beam interference principle, using T-shaped lattice with silicon dielectric rods in air background. It is demonstrated through finite-difference time-domain simulation and verified numerically using MATLAB simulation. The size of PhC lattice structure can be as small as 19.167a×19.167a, where ‘a’ is the lattice constant of the PhC.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics

Reference50 articles.

1. Design of one-bit magnitude comparator using nonlinear plasmonic waveguide;Plasmonics,2016

2. Photonic and photonic band gap structures: Modelling and applications;Physics Procedia,2010

3. Design of 1-bit and 2-bit magnitude comparator using electro-optic effect in Mach–ZehnderInterferometers;Opt Commun,2015

4. A power compensated novel architecture of RM-OXC based on T-FBG and OC: a high-speed and cost-effective system;J Opt Commun,2016

5. Design of one-bit magnitude comparator using nonlinear plasmonic waveguide;Plasmonics,2016

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