Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor

Abstract This article explores the fundamental principles of Single-Electron Transistors (SETs), delving into their design, operation, and the quantum mechanical effects that govern their behavior. It provides an in-depth discussion of the diverse applications of SETs in fields such as memory device...

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Main Authors: Abdelghaffar Nasri, Aimen Boubaker, Adel Kalboussi
Format: Article
Language:English
Published: Springer 2025-03-01
Series:Discover Electronics
Online Access:https://doi.org/10.1007/s44291-025-00053-2
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author Abdelghaffar Nasri
Aimen Boubaker
Adel Kalboussi
author_facet Abdelghaffar Nasri
Aimen Boubaker
Adel Kalboussi
author_sort Abdelghaffar Nasri
collection DOAJ
description Abstract This article explores the fundamental principles of Single-Electron Transistors (SETs), delving into their design, operation, and the quantum mechanical effects that govern their behavior. It provides an in-depth discussion of the diverse applications of SETs in fields such as memory devices, logic gates, artificial neural networks, and gas sensors. The paper also compares these applications with various works in the literature, highlighting the advancements and differences in their implementation. By examining the advantages and challenges associated with these applications, the article aims to showcase the potential and limitations of SETs in modern and future technologies, while presenting the current application as part of a broader review.
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series Discover Electronics
spelling doaj-art-d19b7bce23474932bb12c0fc15a41e3f2025-08-20T02:56:06ZengSpringerDiscover Electronics2948-16002025-03-012112310.1007/s44291-025-00053-2Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensorAbdelghaffar Nasri0Aimen Boubaker1Adel Kalboussi2Faculty of Science of Monastir, Microelectronics and Instrumentation Laboratory, University of MonastirFaculty of Science of Monastir, Microelectronics and Instrumentation Laboratory, University of MonastirFaculty of Science of Monastir, Microelectronics and Instrumentation Laboratory, University of MonastirAbstract This article explores the fundamental principles of Single-Electron Transistors (SETs), delving into their design, operation, and the quantum mechanical effects that govern their behavior. It provides an in-depth discussion of the diverse applications of SETs in fields such as memory devices, logic gates, artificial neural networks, and gas sensors. The paper also compares these applications with various works in the literature, highlighting the advancements and differences in their implementation. By examining the advantages and challenges associated with these applications, the article aims to showcase the potential and limitations of SETs in modern and future technologies, while presenting the current application as part of a broader review.https://doi.org/10.1007/s44291-025-00053-2
spellingShingle Abdelghaffar Nasri
Aimen Boubaker
Adel Kalboussi
Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor
Discover Electronics
title Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor
title_full Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor
title_fullStr Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor
title_full_unstemmed Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor
title_short Principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor
title_sort principles design and applications of single electron transistors in memory devices logic gates neural networks and gas sensor
url https://doi.org/10.1007/s44291-025-00053-2
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AT aimenboubaker principlesdesignandapplicationsofsingleelectrontransistorsinmemorydeviceslogicgatesneuralnetworksandgassensor
AT adelkalboussi principlesdesignandapplicationsofsingleelectrontransistorsinmemorydeviceslogicgatesneuralnetworksandgassensor