Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber Lasers

We present an innovative method harnessing multistability within a diode-pumped erbium-doped fiber laser to construct logic gates. Our approach involves manipulating the intensity of external noise to regulate the probability of transitioning among four concurrent attractors. In this manner, we faci...

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Main Authors: Safara Bibi, Guillermo Huerta-Cuellar, José Luís Echenausía-Monroy, Rider Jaimes-Reátegui, Juan Hugo García-López, Alexander N. Pisarchik
Format: Article
Language:English
Published: MDPI AG 2024-02-01
Series:Photonics
Subjects:
Online Access:https://www.mdpi.com/2304-6732/11/2/176
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author Safara Bibi
Guillermo Huerta-Cuellar
José Luís Echenausía-Monroy
Rider Jaimes-Reátegui
Juan Hugo García-López
Alexander N. Pisarchik
author_facet Safara Bibi
Guillermo Huerta-Cuellar
José Luís Echenausía-Monroy
Rider Jaimes-Reátegui
Juan Hugo García-López
Alexander N. Pisarchik
author_sort Safara Bibi
collection DOAJ
description We present an innovative method harnessing multistability within a diode-pumped erbium-doped fiber laser to construct logic gates. Our approach involves manipulating the intensity of external noise to regulate the probability of transitioning among four concurrent attractors. In this manner, we facilitate the realization of OR, AND, NOR, and NAND logic operations, aligning with the coexisting period-1, period-3, period-4, and period-5 orbits. Employing detrended fluctuation analysis, we establish equilibrium in the probability distributions of these states. The obtained results denote a substantial advancement in the field of optical logic gate development, representing a pivotal stride toward the seamless integration of an all-optical logic gate within laser oscillator-based systems.
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spelling doaj.art-023edf8535c343b8a7cd9cfdf4e45dbf2024-02-23T15:31:44ZengMDPI AGPhotonics2304-67322024-02-0111217610.3390/photonics11020176Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber LasersSafara Bibi0Guillermo Huerta-Cuellar1José Luís Echenausía-Monroy2Rider Jaimes-Reátegui3Juan Hugo García-López4Alexander N. Pisarchik5Dynamical Systems Laboratory, CULagos, Universidad de Guadalajara, Centro Universitario de los Lagos, Enrique Díaz de León 1144, Paseos de la Montaña, Lagos de Moreno 47460, MexicoDynamical Systems Laboratory, CULagos, Universidad de Guadalajara, Centro Universitario de los Lagos, Enrique Díaz de León 1144, Paseos de la Montaña, Lagos de Moreno 47460, MexicoApplied Physics Division, Center for Scientific Research and Higher Education at Ensenada, CICESE, Carr. Ensenada-Tijuana 3918, Zona Playitas, Ensenada 22860, MexicoDynamical Systems Laboratory, CULagos, Universidad de Guadalajara, Centro Universitario de los Lagos, Enrique Díaz de León 1144, Paseos de la Montaña, Lagos de Moreno 47460, MexicoDynamical Systems Laboratory, CULagos, Universidad de Guadalajara, Centro Universitario de los Lagos, Enrique Díaz de León 1144, Paseos de la Montaña, Lagos de Moreno 47460, MexicoCenter for Biomedical Technology, Universidad Politécnica de Madrid, Campus Montegancedo, 28223 Madrid, SpainWe present an innovative method harnessing multistability within a diode-pumped erbium-doped fiber laser to construct logic gates. Our approach involves manipulating the intensity of external noise to regulate the probability of transitioning among four concurrent attractors. In this manner, we facilitate the realization of OR, AND, NOR, and NAND logic operations, aligning with the coexisting period-1, period-3, period-4, and period-5 orbits. Employing detrended fluctuation analysis, we establish equilibrium in the probability distributions of these states. The obtained results denote a substantial advancement in the field of optical logic gate development, representing a pivotal stride toward the seamless integration of an all-optical logic gate within laser oscillator-based systems.https://www.mdpi.com/2304-6732/11/2/176multistate intermittencymultistabilityerbium-doped fiber laserdetrended fluctuation analysislogic operationslogic gates
spellingShingle Safara Bibi
Guillermo Huerta-Cuellar
José Luís Echenausía-Monroy
Rider Jaimes-Reátegui
Juan Hugo García-López
Alexander N. Pisarchik
Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber Lasers
Photonics
multistate intermittency
multistability
erbium-doped fiber laser
detrended fluctuation analysis
logic operations
logic gates
title Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber Lasers
title_full Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber Lasers
title_fullStr Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber Lasers
title_full_unstemmed Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber Lasers
title_short Harnessing Multistability: A Novel Approach to Optical Logic Gate Construction Using Erbium-Doped Fiber Lasers
title_sort harnessing multistability a novel approach to optical logic gate construction using erbium doped fiber lasers
topic multistate intermittency
multistability
erbium-doped fiber laser
detrended fluctuation analysis
logic operations
logic gates
url https://www.mdpi.com/2304-6732/11/2/176
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