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Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy

Superlattices (SLs) comprising layers of a soft ferromagnetic metal La(2/3)Sr(1/3)MnO(3) (LSMO) with in-plane (IP) magnetic easy axis and a hard ferromagnetic insulator La(2)MnCoO(6) (LMCO, out-of-plane anisotropy) were grown on SrTiO(3) (100)(STO) substrates by a metalorganic aerosol deposition tec...

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Autores principales: Bruchmann-Bamberg, Vitaly, Weimer, Isabell, Roddatis, Vladimir, Ross, Ulrich, Schüler, Leonard, Stroh, Karen P., Moshnyaga, Vasily
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10649329/
https://www.ncbi.nlm.nih.gov/pubmed/37947741
http://dx.doi.org/10.3390/nano13212897
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author Bruchmann-Bamberg, Vitaly
Weimer, Isabell
Roddatis, Vladimir
Ross, Ulrich
Schüler, Leonard
Stroh, Karen P.
Moshnyaga, Vasily
author_facet Bruchmann-Bamberg, Vitaly
Weimer, Isabell
Roddatis, Vladimir
Ross, Ulrich
Schüler, Leonard
Stroh, Karen P.
Moshnyaga, Vasily
author_sort Bruchmann-Bamberg, Vitaly
collection PubMed
description Superlattices (SLs) comprising layers of a soft ferromagnetic metal La(2/3)Sr(1/3)MnO(3) (LSMO) with in-plane (IP) magnetic easy axis and a hard ferromagnetic insulator La(2)MnCoO(6) (LMCO, out-of-plane anisotropy) were grown on SrTiO(3) (100)(STO) substrates by a metalorganic aerosol deposition technique. Exchange spring magnetic (ESM) behavior between LSMO and LMCO, manifested by a spin reorientation transition of the LSMO layers towards perpendicular magnetic anisotropy below T(SR) = 260 K, was observed. Further, 3ω measurements of the [(LMCO)(9)/(LSMO)(9)](11)/STO(100) superlattices revealed extremely low values of the cross-plane thermal conductivity κ(300 K) = 0.32 Wm(−1)K(−1). Additionally, the thermal conductivity shows a peculiar dependence on the applied IP magnetic field, either decreasing or increasing in accordance with the magnetic disorder induced by ESM. Furthermore, both positive and negative magnetoresistance were observed in the SL in the respective temperature regions due to the formation of 90°-Néel domain walls within the ESM, when applying IP magnetic fields. The results are discussed in the framework of electronic contribution to thermal conductivity originating from the LSMO layers.
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spelling pubmed-106493292023-11-03 Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy Bruchmann-Bamberg, Vitaly Weimer, Isabell Roddatis, Vladimir Ross, Ulrich Schüler, Leonard Stroh, Karen P. Moshnyaga, Vasily Nanomaterials (Basel) Article Superlattices (SLs) comprising layers of a soft ferromagnetic metal La(2/3)Sr(1/3)MnO(3) (LSMO) with in-plane (IP) magnetic easy axis and a hard ferromagnetic insulator La(2)MnCoO(6) (LMCO, out-of-plane anisotropy) were grown on SrTiO(3) (100)(STO) substrates by a metalorganic aerosol deposition technique. Exchange spring magnetic (ESM) behavior between LSMO and LMCO, manifested by a spin reorientation transition of the LSMO layers towards perpendicular magnetic anisotropy below T(SR) = 260 K, was observed. Further, 3ω measurements of the [(LMCO)(9)/(LSMO)(9)](11)/STO(100) superlattices revealed extremely low values of the cross-plane thermal conductivity κ(300 K) = 0.32 Wm(−1)K(−1). Additionally, the thermal conductivity shows a peculiar dependence on the applied IP magnetic field, either decreasing or increasing in accordance with the magnetic disorder induced by ESM. Furthermore, both positive and negative magnetoresistance were observed in the SL in the respective temperature regions due to the formation of 90°-Néel domain walls within the ESM, when applying IP magnetic fields. The results are discussed in the framework of electronic contribution to thermal conductivity originating from the LSMO layers. MDPI 2023-11-03 /pmc/articles/PMC10649329/ /pubmed/37947741 http://dx.doi.org/10.3390/nano13212897 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
Bruchmann-Bamberg, Vitaly
Weimer, Isabell
Roddatis, Vladimir
Ross, Ulrich
Schüler, Leonard
Stroh, Karen P.
Moshnyaga, Vasily
Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy
title Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy
title_full Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy
title_fullStr Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy
title_full_unstemmed Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy
title_short Magnetism and Thermal Transport of Exchange-Spring-Coupled La(2/3)Sr(1/3)MnO(3)/La(2)MnCoO(6) Superlattices with Perpendicular Magnetic Anisotropy
title_sort magnetism and thermal transport of exchange-spring-coupled la(2/3)sr(1/3)mno(3)/la(2)mncoo(6) superlattices with perpendicular magnetic anisotropy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10649329/
https://www.ncbi.nlm.nih.gov/pubmed/37947741
http://dx.doi.org/10.3390/nano13212897
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