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Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study

Here, we report the presence of defect-related states with magnetic degrees of freedom in crystals of LaAlO(3) and several other rare-earth based perovskite oxides using inelastic light scattering (Raman spectroscopy) at low temperatures in applied magnetic fields of up to 9 T. Some of these states...

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Autores principales: Saha, Surajit, Cao, Bing-Chen, Motapothula, M., Cong, Chun-Xiao, Sarkar, Tarapada, Srivastava, Amar, Sarkar, Soumya, Patra, Abhijeet, Ghosh, Siddhartha, Ariando, Coey, J. M. D., Yu, Ting, Venkatesan, T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5109287/
https://www.ncbi.nlm.nih.gov/pubmed/27845368
http://dx.doi.org/10.1038/srep36859
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author Saha, Surajit
Cao, Bing-Chen
Motapothula, M.
Cong, Chun-Xiao
Sarkar, Tarapada
Srivastava, Amar
Sarkar, Soumya
Patra, Abhijeet
Ghosh, Siddhartha
Ariando,
Coey, J. M. D.
Yu, Ting
Venkatesan, T.
author_facet Saha, Surajit
Cao, Bing-Chen
Motapothula, M.
Cong, Chun-Xiao
Sarkar, Tarapada
Srivastava, Amar
Sarkar, Soumya
Patra, Abhijeet
Ghosh, Siddhartha
Ariando,
Coey, J. M. D.
Yu, Ting
Venkatesan, T.
author_sort Saha, Surajit
collection PubMed
description Here, we report the presence of defect-related states with magnetic degrees of freedom in crystals of LaAlO(3) and several other rare-earth based perovskite oxides using inelastic light scattering (Raman spectroscopy) at low temperatures in applied magnetic fields of up to 9 T. Some of these states are at about 140 meV above the valence band maximum while others are mid-gap states at about 2.3 eV. No magnetic impurity could be detected in LaAlO(3) by Proton-Induced X-ray Emission Spectroscopy. We, therefore, attribute the angular momentum-like states in LaAlO(3) to cationic/anionic vacancies or anti-site defects. Comparison with the other rare earth perovskites leads to the empirical rule that the magnetic-field-sensitive transitions require planes of heavy elements (e.g. lanthanum) and oxygen without any other light cations in the same plane. These magnetic degrees of freedom in rare earth perovskites with useful dielectric properties may be tunable by appropriate defect engineering for magneto-optic applications.
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spelling pubmed-51092872016-11-25 Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study Saha, Surajit Cao, Bing-Chen Motapothula, M. Cong, Chun-Xiao Sarkar, Tarapada Srivastava, Amar Sarkar, Soumya Patra, Abhijeet Ghosh, Siddhartha Ariando, Coey, J. M. D. Yu, Ting Venkatesan, T. Sci Rep Article Here, we report the presence of defect-related states with magnetic degrees of freedom in crystals of LaAlO(3) and several other rare-earth based perovskite oxides using inelastic light scattering (Raman spectroscopy) at low temperatures in applied magnetic fields of up to 9 T. Some of these states are at about 140 meV above the valence band maximum while others are mid-gap states at about 2.3 eV. No magnetic impurity could be detected in LaAlO(3) by Proton-Induced X-ray Emission Spectroscopy. We, therefore, attribute the angular momentum-like states in LaAlO(3) to cationic/anionic vacancies or anti-site defects. Comparison with the other rare earth perovskites leads to the empirical rule that the magnetic-field-sensitive transitions require planes of heavy elements (e.g. lanthanum) and oxygen without any other light cations in the same plane. These magnetic degrees of freedom in rare earth perovskites with useful dielectric properties may be tunable by appropriate defect engineering for magneto-optic applications. Nature Publishing Group 2016-11-15 /pmc/articles/PMC5109287/ /pubmed/27845368 http://dx.doi.org/10.1038/srep36859 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Saha, Surajit
Cao, Bing-Chen
Motapothula, M.
Cong, Chun-Xiao
Sarkar, Tarapada
Srivastava, Amar
Sarkar, Soumya
Patra, Abhijeet
Ghosh, Siddhartha
Ariando,
Coey, J. M. D.
Yu, Ting
Venkatesan, T.
Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study
title Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study
title_full Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study
title_fullStr Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study
title_full_unstemmed Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study
title_short Magnetic Modes in Rare Earth Perovskites: A Magnetic-Field-Dependent Inelastic Light Scattering study
title_sort magnetic modes in rare earth perovskites: a magnetic-field-dependent inelastic light scattering study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5109287/
https://www.ncbi.nlm.nih.gov/pubmed/27845368
http://dx.doi.org/10.1038/srep36859
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