Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles study

Exploring the thermodynamically metastable L10-ordered τ-MnAl alloy and its intrinsic magnetic properties are of great importance for its potential candidature as rare-earth-free permanent magnets (PMs). Here, based on first-principles calculations, we present a comprehensive investigation of the in...

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Main Authors: Riyajul Islam, Aszad Alam, J. P. Borah
Format: Article
Language:English
Published: AIP Publishing LLC 2022-06-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0093061
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author Riyajul Islam
Aszad Alam
J. P. Borah
author_facet Riyajul Islam
Aszad Alam
J. P. Borah
author_sort Riyajul Islam
collection DOAJ
description Exploring the thermodynamically metastable L10-ordered τ-MnAl alloy and its intrinsic magnetic properties are of great importance for its potential candidature as rare-earth-free permanent magnets (PMs). Here, based on first-principles calculations, we present a comprehensive investigation of the intrinsic magnetic properties of MnAlCx. The interstitial C-doping is demonstrated to have a substantial influence on the uniaxial magnetic anisotropy energy Ku, making MnAlCx appealing for PM applications. We predict a substantial enhancement in Ku of up to 2.30 MJ/m3 for x = 1, which is roughly 35% larger than that of pristine MnAl. The atomic resolved and orbital resolved Ku, as well as the perturbation theory energy analysis, may be used to understand the cause of this enhancement. Using second-order perturbation theory and electronic structure analysis, we show that increased Ku is caused by a complex interplay between tetragonal and orbital distortion due to the C-doping. These findings can aid in the efficient and inexpensive design of PM materials.
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spelling doaj.art-f34a61e2d5de4ed39c7f40de6e116c392022-12-22T00:54:44ZengAIP Publishing LLCAIP Advances2158-32262022-06-01126065221065221-710.1063/5.0093061Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles studyRiyajul Islam0Aszad Alam1J. P. Borah2Department of Physics, National Institute of Technology Nagaland, Chümoukedima, Nagaland 797103, IndiaDepartment of Physics, National Institute of Technology Nagaland, Chümoukedima, Nagaland 797103, IndiaDepartment of Physics, National Institute of Technology Nagaland, Chümoukedima, Nagaland 797103, IndiaExploring the thermodynamically metastable L10-ordered τ-MnAl alloy and its intrinsic magnetic properties are of great importance for its potential candidature as rare-earth-free permanent magnets (PMs). Here, based on first-principles calculations, we present a comprehensive investigation of the intrinsic magnetic properties of MnAlCx. The interstitial C-doping is demonstrated to have a substantial influence on the uniaxial magnetic anisotropy energy Ku, making MnAlCx appealing for PM applications. We predict a substantial enhancement in Ku of up to 2.30 MJ/m3 for x = 1, which is roughly 35% larger than that of pristine MnAl. The atomic resolved and orbital resolved Ku, as well as the perturbation theory energy analysis, may be used to understand the cause of this enhancement. Using second-order perturbation theory and electronic structure analysis, we show that increased Ku is caused by a complex interplay between tetragonal and orbital distortion due to the C-doping. These findings can aid in the efficient and inexpensive design of PM materials.http://dx.doi.org/10.1063/5.0093061
spellingShingle Riyajul Islam
Aszad Alam
J. P. Borah
Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles study
AIP Advances
title Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles study
title_full Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles study
title_fullStr Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles study
title_full_unstemmed Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles study
title_short Origin of uniaxial magnetic anisotropy in MnAlCx: A first-principles study
title_sort origin of uniaxial magnetic anisotropy in mnalcx a first principles study
url http://dx.doi.org/10.1063/5.0093061
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