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Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films

The ability to manipulate spins in magnetic materials is essential in designing spintronics devices. One method for magnetic switching is through strain. In VO [Formula: see text] on TiO [Formula: see text] thin films, while VO [Formula: see text] remains rutile across the metal–insulator transition...

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Autores principales: Ma, Chung T., Kittiwatanakul, Salinporn, Sittipongpittaya, Apiprach, Wang, Yuhan, Morshed, Md Golam, Ghosh, Avik W., Poon, S. Joseph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650912/
https://www.ncbi.nlm.nih.gov/pubmed/37947693
http://dx.doi.org/10.3390/nano13212848
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author Ma, Chung T.
Kittiwatanakul, Salinporn
Sittipongpittaya, Apiprach
Wang, Yuhan
Morshed, Md Golam
Ghosh, Avik W.
Poon, S. Joseph
author_facet Ma, Chung T.
Kittiwatanakul, Salinporn
Sittipongpittaya, Apiprach
Wang, Yuhan
Morshed, Md Golam
Ghosh, Avik W.
Poon, S. Joseph
author_sort Ma, Chung T.
collection PubMed
description The ability to manipulate spins in magnetic materials is essential in designing spintronics devices. One method for magnetic switching is through strain. In VO [Formula: see text] on TiO [Formula: see text] thin films, while VO [Formula: see text] remains rutile across the metal–insulator transition, the in-plane lattice area expands going from a low-temperature insulating phase to a high-temperature conducting phase. In a VO [Formula: see text] /TbFeCo bilayer, the expansion of the VO [Formula: see text] lattice area exerts tension on the amorphous TbFeCo layer. Through the strain effect, magnetic properties, including the magnetic anisotropy and magnetization, of TbFeCo can be changed. In this work, the changes in magnetic properties of TbFeCo on VO [Formula: see text] /TiO [Formula: see text] (011) are demonstrated using anomalous Hall effect measurements. Across the metal–insulator transition, TbFeCo loses perpendicular magnetic anisotropy, and the magnetization in TbFeCo turns from out-of-plane to in-plane. Using atomistic simulations, we confirm these tunable magnetic properties originating from the metal–insulator transition of VO [Formula: see text]. This study provides the groundwork for controlling magnetic properties through a phase transition.
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spelling pubmed-106509122023-10-27 Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films Ma, Chung T. Kittiwatanakul, Salinporn Sittipongpittaya, Apiprach Wang, Yuhan Morshed, Md Golam Ghosh, Avik W. Poon, S. Joseph Nanomaterials (Basel) Article The ability to manipulate spins in magnetic materials is essential in designing spintronics devices. One method for magnetic switching is through strain. In VO [Formula: see text] on TiO [Formula: see text] thin films, while VO [Formula: see text] remains rutile across the metal–insulator transition, the in-plane lattice area expands going from a low-temperature insulating phase to a high-temperature conducting phase. In a VO [Formula: see text] /TbFeCo bilayer, the expansion of the VO [Formula: see text] lattice area exerts tension on the amorphous TbFeCo layer. Through the strain effect, magnetic properties, including the magnetic anisotropy and magnetization, of TbFeCo can be changed. In this work, the changes in magnetic properties of TbFeCo on VO [Formula: see text] /TiO [Formula: see text] (011) are demonstrated using anomalous Hall effect measurements. Across the metal–insulator transition, TbFeCo loses perpendicular magnetic anisotropy, and the magnetization in TbFeCo turns from out-of-plane to in-plane. Using atomistic simulations, we confirm these tunable magnetic properties originating from the metal–insulator transition of VO [Formula: see text]. This study provides the groundwork for controlling magnetic properties through a phase transition. MDPI 2023-10-27 /pmc/articles/PMC10650912/ /pubmed/37947693 http://dx.doi.org/10.3390/nano13212848 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, Chung T.
Kittiwatanakul, Salinporn
Sittipongpittaya, Apiprach
Wang, Yuhan
Morshed, Md Golam
Ghosh, Avik W.
Poon, S. Joseph
Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films
title Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films
title_full Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films
title_fullStr Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films
title_full_unstemmed Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films
title_short Phase Change-Induced Magnetic Switching through Metal–Insulator Transition in VO(2)/TbFeCo Films
title_sort phase change-induced magnetic switching through metal–insulator transition in vo(2)/tbfeco films
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650912/
https://www.ncbi.nlm.nih.gov/pubmed/37947693
http://dx.doi.org/10.3390/nano13212848
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