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Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study

We explore the influence of pressure on the magnetic ground state of the heavy-fermion antiferromagnet (ferromagnet) CeAuSb [Formula: see text] (CeAgSb [Formula: see text]) using first-principles calculations. The total-energy differences obtained by including the spin-orbit interactions and the on-...

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Autores principales: Alsardia, Mowafaq Mohammad, Jang, Jaekyung, Rhee, Joo Yull
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7287816/
https://www.ncbi.nlm.nih.gov/pubmed/32414051
http://dx.doi.org/10.3390/ma13102237
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author Alsardia, Mowafaq Mohammad
Jang, Jaekyung
Rhee, Joo Yull
author_facet Alsardia, Mowafaq Mohammad
Jang, Jaekyung
Rhee, Joo Yull
author_sort Alsardia, Mowafaq Mohammad
collection PubMed
description We explore the influence of pressure on the magnetic ground state of the heavy-fermion antiferromagnet (ferromagnet) CeAuSb [Formula: see text] (CeAgSb [Formula: see text]) using first-principles calculations. The total-energy differences obtained by including the spin-orbit interactions and the on-site Coulomb potential for the Ce-derived 4f-orbitals are necessary to realize the accurate magnetic ground state of CeNMSb [Formula: see text] (NM: Au and Ag). According to our results, the appearance of a new magnetic phase of CeAuSb [Formula: see text] (CeAgSb [Formula: see text]) at the pressure of 2.1 GPa (3.5 GPa) is due to the rotation of the magnetic easy axis from the <001> to the <100> direction. Additionally, our data confirm that CeAgSb [Formula: see text] is antiferromagnetic (AFM) above a critical pressure [Formula: see text] , and such a tendency is expected for CeAuSb [Formula: see text] and remains to be seen. Through the spin-orbit-coupling Hamiltonian and detailed information on the occupation of individual 4f-orbitals of the Ce atom obtained by the electronic-structure calculations, we can deduce the rotation of the magnetic easy axis upon the application of pressure. According to the present and previous studies, the differences among the magnetic properties of CeNMSb [Formula: see text] (NM: Cu, Ag and Au) compounds are not due to the different noble metals, but due to the subtle differences in the relative position of Ce atoms and, in turn, different occupations of Ce 4f-orbitals.
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spelling pubmed-72878162020-06-15 Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study Alsardia, Mowafaq Mohammad Jang, Jaekyung Rhee, Joo Yull Materials (Basel) Article We explore the influence of pressure on the magnetic ground state of the heavy-fermion antiferromagnet (ferromagnet) CeAuSb [Formula: see text] (CeAgSb [Formula: see text]) using first-principles calculations. The total-energy differences obtained by including the spin-orbit interactions and the on-site Coulomb potential for the Ce-derived 4f-orbitals are necessary to realize the accurate magnetic ground state of CeNMSb [Formula: see text] (NM: Au and Ag). According to our results, the appearance of a new magnetic phase of CeAuSb [Formula: see text] (CeAgSb [Formula: see text]) at the pressure of 2.1 GPa (3.5 GPa) is due to the rotation of the magnetic easy axis from the <001> to the <100> direction. Additionally, our data confirm that CeAgSb [Formula: see text] is antiferromagnetic (AFM) above a critical pressure [Formula: see text] , and such a tendency is expected for CeAuSb [Formula: see text] and remains to be seen. Through the spin-orbit-coupling Hamiltonian and detailed information on the occupation of individual 4f-orbitals of the Ce atom obtained by the electronic-structure calculations, we can deduce the rotation of the magnetic easy axis upon the application of pressure. According to the present and previous studies, the differences among the magnetic properties of CeNMSb [Formula: see text] (NM: Cu, Ag and Au) compounds are not due to the different noble metals, but due to the subtle differences in the relative position of Ce atoms and, in turn, different occupations of Ce 4f-orbitals. MDPI 2020-05-13 /pmc/articles/PMC7287816/ /pubmed/32414051 http://dx.doi.org/10.3390/ma13102237 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Alsardia, Mowafaq Mohammad
Jang, Jaekyung
Rhee, Joo Yull
Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study
title Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study
title_full Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study
title_fullStr Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study
title_full_unstemmed Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study
title_short Pressure Effects on the Magnetic Phase Diagram of the CeNMSb(2) (NM: Au and Ag): A DFT Study
title_sort pressure effects on the magnetic phase diagram of the cenmsb(2) (nm: au and ag): a dft study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7287816/
https://www.ncbi.nlm.nih.gov/pubmed/32414051
http://dx.doi.org/10.3390/ma13102237
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