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Variability in Resistive Memories

delete2023-03-14
delete60
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OA
AI
J
J.B. Roldán *
E
E. Miranda
D
D. Maldonado
A
Alexey Mikhaylov
N
N. V. Agudov
A
A. A. Dubkov
M
M. N. Koryazhkina
M
Mireia Bargalló González
M
Marco A. Villena
S
Samuel Poblador
M
M. Saludes-Tapia
R
Rodrigo Picos
F
F. Jiménez-Molinos
S
Stavros G. Stavrinides
E
E. Salvador
F
Francisco Alonso
F
F. Campabadal
B
Bernardo Spagnolo
M
Mario Lanza
L
Leon O. Chua
DOI:10.1002/aisy.202200338delete
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摘要

摘要

En 中文
Resistive memories are outstanding electron devices that have displayed a large potential in a plethora of applications such as nonvolatile data storage, neuromorphic computing, hardware cryptography, etc. Their fabrication control and performance have been notably improved in the last few years to cope with the requirements of massive industrial production. However, the most important hurdle to progress in their development is the so-called cycle-to-cycle variability, which is inherently rooted in the resistive switching mechanism behind the operational principle of these devices. In order to achieve the whole picture, variability must be assessed from different viewpoints going from the experimental characterization to the adequation of modeling and simulation techniques. Herein, special emphasis is put on the modeling part because the accurate representation of the phenomenon is critical for circuit designers. In this respect, a number of approaches are used to the date: stochastic, behavioral, mesoscopic..., each of them covering particular aspects of the electron and ion transport mechanisms occurring within the switching material. These subjects are dealt with in this review, with the aim of presenting the most recent advancements in the treatment of variability in resistive memories.
Keyword:
2D materials
experimental characterization
memristor
modeling
resistive memory
resistive switching
variability
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Advanced Intelligent Systems 封面图
Advanced Intelligent Systems
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6.1
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K
king abdullah university of science & technology
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1.3W
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被引数: 32
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csic - instituto de microelectronica de barcelona (imb-cnm)
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consejo superior de investigaciones cientificas (csic)
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University of California Berkeley
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Lobachevsky State University of Nizhni Novgorod
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International Hellenic University
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Autonomous University of Barcelona
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University of Granada
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