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A novel proposal for all-optical decoder based on photonic crystals

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TLDR
A new structure for all-optical 2-to-4 decoder is proposed which consists of six nonlinear photonic crystal ring resonators which will be appropriate candidate for being employed in ultrahigh-speed optical communication systems.
Abstract
In this paper, a new structure for all-optical 2-to-4 decoder is proposed which consists of six nonlinear photonic crystal ring resonators. The lattice constant of the main structure is a = 600 nm, and the refractive index and radii of rods are 3.1 and 0.2a, respectively. Simulation results have proved correct operation states of the decoder and numerical analysis is done in order to additional evaluation. The maximum and minimum power levels for logic 0 and 1 are $$0.1P_{\mathrm{in}}$$ and $$0.37P_{\mathrm{in}}$$ where $$P_{\mathrm{in}}$$ is input power. The maximum cross talk and insertion loss are calculated about −38 and −20 dB, respectively. Since the operation speed of the decoder is more than 160 GHz, it will be appropriate candidate for being employed in ultrahigh-speed optical communication systems.

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Citations
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Journal ArticleDOI

An All-Optical Digital 2-to-1 Multiplexer Using Photonic Crystal-Based Nonlinear Ring Resonators

TL;DR: In this article, a structure consisting of two nonlinear photonic crystal ring resonators, L-shaped and T-shaped, and a straight waveguide was proposed to realize an all-optical digital multiplexer.
Journal ArticleDOI

Design and simulation of an all optical photonic crystal-based comparator

TL;DR: In this article, a 1-bit optical comparator using nonlinear photonic crystal ring resonators is proposed, which is made of dielectric rods around the core section of the resonant ring.
Journal ArticleDOI

All optical half subtractor using photonic crystal based nonlinear ring resonators

TL;DR: In this paper, the authors used three nonlinear photonic crystal based ring resonators for designing a novel structure for realizing all optical half subtractor, where X and Y are the input ports and D and B are the output ports.
Journal ArticleDOI

Application of photonic-crystal-based nonlinear ring resonators for realizing an all-optical comparator.

TL;DR: A photonic crystal (PhC)-based structure was proposed for designing a 1-bit all-optical comparator using nonlinear ring resonators inside PhCs and the maximum rise time obtained was about 4 ps.
Journal ArticleDOI

Ultra-fast all-optical encoder using photonic crystal-based ring resonators

TL;DR: A novel structure for designing an all-optical 4-to-2 optical encoder based on photonic crystals was proposed which results in improved coupling efficiencies between input and output waveguide and reduced cross-reflection between the input ports.
References
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Journal ArticleDOI

Diode Lasers and Photonic Integrated Circuits

TL;DR: In this paper, a Phenomenological Approach to Diode Lasers is presented, where mirrors and Resonators are used for diode luminaries, and coupled-mode theory is applied.
Journal ArticleDOI

A 2*4 all optical decoder switch based on photonic crystal ring resonators

TL;DR: Based on photonic crystal ring resonators and nonlinear Kerr effect, a 1*2 all optical decoder switch is proposed that has 1 logic input port and one bias input port.
Journal ArticleDOI

Design of all optical logic gates in photonic crystal waveguides

TL;DR: In this article, the design of all optical logic gates based on two-dimensional photonic crystal (PhC) composed of triangular lattice of air holes in silicon (Si) was reported.
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