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Main Authors: Alam, Md Nur K., Clima, S., Kaczer, B., Roussel, Ph., Truijen, B., Ragnarsson, L. - A., Horiguchi, N., Heyns, M., Van Houdt, J.
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2404.13138
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author Alam, Md Nur K.
Clima, S.
Kaczer, B.
Roussel, Ph.
Truijen, B.
Ragnarsson, L. - A.
Horiguchi, N.
Heyns, M.
Van Houdt, J.
author_facet Alam, Md Nur K.
Clima, S.
Kaczer, B.
Roussel, Ph.
Truijen, B.
Ragnarsson, L. - A.
Horiguchi, N.
Heyns, M.
Van Houdt, J.
contents Existence of quasi-static negative capacitance (QSNC) was proposed from an interpretation of the widely accepted Landau model of ferroelectrics. However, many works showed not to support the QSNC theory, making it controversial. In this letter we show the Landau model when used together with transition-state-theory, can connect various models including first-principles, Landau, Preisach and nucleation limited switching while it does not predict the existence of QSNC.
format Preprint
id arxiv_https___arxiv_org_abs_2404_13138
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Transition-state-theory-based interpretation of Landau double well potential for ferroelectrics
Alam, Md Nur K.
Clima, S.
Kaczer, B.
Roussel, Ph.
Truijen, B.
Ragnarsson, L. - A.
Horiguchi, N.
Heyns, M.
Van Houdt, J.
Materials Science
Systems and Control
Existence of quasi-static negative capacitance (QSNC) was proposed from an interpretation of the widely accepted Landau model of ferroelectrics. However, many works showed not to support the QSNC theory, making it controversial. In this letter we show the Landau model when used together with transition-state-theory, can connect various models including first-principles, Landau, Preisach and nucleation limited switching while it does not predict the existence of QSNC.
title Transition-state-theory-based interpretation of Landau double well potential for ferroelectrics
topic Materials Science
Systems and Control
url https://arxiv.org/abs/2404.13138