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Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces

We utilize polarized neutron reflectometry (PNR) in consort with ab initio based density functional theory (DFT) calculations to study magnetoelectric coupling at the interface of a ferroelectric PbZr(0.2)Ti(0.8)O(3) (PZT) and magnetic La(0.67)Sr(0.33)MnO(3) (LSMO) heterostructure grown on a Nb-dope...

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Autores principales: Paudel, Binod, Vasiliev, Igor, Hammouri, Mahmoud, Karpov, Dmitry, Chen, Aiping, Lauter, Valeria, Fohtung, Edwin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9063773/
https://www.ncbi.nlm.nih.gov/pubmed/35520794
http://dx.doi.org/10.1039/c9ra01503e
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author Paudel, Binod
Vasiliev, Igor
Hammouri, Mahmoud
Karpov, Dmitry
Chen, Aiping
Lauter, Valeria
Fohtung, Edwin
author_facet Paudel, Binod
Vasiliev, Igor
Hammouri, Mahmoud
Karpov, Dmitry
Chen, Aiping
Lauter, Valeria
Fohtung, Edwin
author_sort Paudel, Binod
collection PubMed
description We utilize polarized neutron reflectometry (PNR) in consort with ab initio based density functional theory (DFT) calculations to study magnetoelectric coupling at the interface of a ferroelectric PbZr(0.2)Ti(0.8)O(3) (PZT) and magnetic La(0.67)Sr(0.33)MnO(3) (LSMO) heterostructure grown on a Nb-doped SrTiO(3) (001) substrate. Functional device working conditions are mimicked by gating the heterostructure with a Pt top electrode to apply an external electric field, which alters the magnitude and switches the direction of the ferroelectric (FE) polarization, across the PZT layer. PNR results show that the gated PZT/LSMO exhibits interfacial magnetic phase modulation attributed to ferromagnetic (FM) to A-antiferromagnetic (A-AF) phase transitions resulting from hole accumulation. When the net FE polarization points towards the interface (positive), the interface doesn't undergo a magnetic phase transition and retains its global FM ordered state. In addition to changes in the interfacial magnetic ordering, the global magnetization of LSMO increases while switching the polarization from positive to negative and decreases vice versa. DFT calculations indicate that this enhanced magnetization also correlates with an out of plane tensile strain, whereas the suppressed magnetization for positive polarization is attributed to out of plane compressive strain. These calculations also show the coexistence of FM and A-AF phases at zero out of plane strain. Charge modulations throughout the LSMO layer appear to be unaffected by strain, suggesting that these charge mediated effects do not significantly change the global magnetization. Our PNR results and DFT calculations are in consort to verify that the interfacial magnetic modulations are due to co-action of strain and charge mediated effects with the strain and charge effects dominant at different length scale.
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spelling pubmed-90637732022-05-04 Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces Paudel, Binod Vasiliev, Igor Hammouri, Mahmoud Karpov, Dmitry Chen, Aiping Lauter, Valeria Fohtung, Edwin RSC Adv Chemistry We utilize polarized neutron reflectometry (PNR) in consort with ab initio based density functional theory (DFT) calculations to study magnetoelectric coupling at the interface of a ferroelectric PbZr(0.2)Ti(0.8)O(3) (PZT) and magnetic La(0.67)Sr(0.33)MnO(3) (LSMO) heterostructure grown on a Nb-doped SrTiO(3) (001) substrate. Functional device working conditions are mimicked by gating the heterostructure with a Pt top electrode to apply an external electric field, which alters the magnitude and switches the direction of the ferroelectric (FE) polarization, across the PZT layer. PNR results show that the gated PZT/LSMO exhibits interfacial magnetic phase modulation attributed to ferromagnetic (FM) to A-antiferromagnetic (A-AF) phase transitions resulting from hole accumulation. When the net FE polarization points towards the interface (positive), the interface doesn't undergo a magnetic phase transition and retains its global FM ordered state. In addition to changes in the interfacial magnetic ordering, the global magnetization of LSMO increases while switching the polarization from positive to negative and decreases vice versa. DFT calculations indicate that this enhanced magnetization also correlates with an out of plane tensile strain, whereas the suppressed magnetization for positive polarization is attributed to out of plane compressive strain. These calculations also show the coexistence of FM and A-AF phases at zero out of plane strain. Charge modulations throughout the LSMO layer appear to be unaffected by strain, suggesting that these charge mediated effects do not significantly change the global magnetization. Our PNR results and DFT calculations are in consort to verify that the interfacial magnetic modulations are due to co-action of strain and charge mediated effects with the strain and charge effects dominant at different length scale. The Royal Society of Chemistry 2019-04-29 /pmc/articles/PMC9063773/ /pubmed/35520794 http://dx.doi.org/10.1039/c9ra01503e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Paudel, Binod
Vasiliev, Igor
Hammouri, Mahmoud
Karpov, Dmitry
Chen, Aiping
Lauter, Valeria
Fohtung, Edwin
Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces
title Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces
title_full Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces
title_fullStr Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces
title_full_unstemmed Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces
title_short Strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces
title_sort strain vs. charge mediated magnetoelectric coupling across the magnetic oxide/ferroelectric interfaces
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9063773/
https://www.ncbi.nlm.nih.gov/pubmed/35520794
http://dx.doi.org/10.1039/c9ra01503e
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