Perpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio study

First principles study of the magnetic anisotropy of Mn2VIn (001) films show perpendicular magnetic anisotropy (PMA), which increases as a function of the thickness of the film. Density functional theory (DFT) as implemented in the Vienna Ab initio simulation package (VASP) is employed here to perfo...

Full description

Bibliographic Details
Main Authors: Muthui Zipporah, Musembi Robinson, Mwabora Julius, Kashyap Arti
Format: Article
Language:English
Published: AIP Publishing LLC 2018-05-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5007211
id doaj-68ed63fd384c4483a611ab8e82c5a9ba
record_format Article
spelling doaj-68ed63fd384c4483a611ab8e82c5a9ba2020-11-24T21:12:53ZengAIP Publishing LLCAIP Advances2158-32262018-05-0185055701055701-710.1063/1.5007211083891ADVPerpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio studyMuthui Zipporah0Musembi Robinson1Mwabora Julius2Kashyap Arti3Department of Physics, University of Nairobi, P.O.Box 30197, 00100 Nairobi, KenyaDepartment of Physics, University of Nairobi, P.O.Box 30197, 00100 Nairobi, KenyaDepartment of Physics, University of Nairobi, P.O.Box 30197, 00100 Nairobi, KenyaSchool of Basic Sciences, Indian Institute of Technology, Mandi, Himachal Pradesh 175005, IndiaFirst principles study of the magnetic anisotropy of Mn2VIn (001) films show perpendicular magnetic anisotropy (PMA), which increases as a function of the thickness of the film. Density functional theory (DFT) as implemented in the Vienna Ab initio simulation package (VASP) is employed here to perform a comprehensive theoretical investigation of the structural, electronic and magnetic properties of the Mn2VIn(001) films of varying thickness. Our calculations were performed on fully relaxed structures, with five to seventeen mono layers (ML). The degree of spin polarization is higher in the (001) Mn2VIn thin films as compared to the bulk in contrast to what is usually the case and as in Mn2VAl, which is isoelectronic to Mn2VIn as well as inCo2VIn (001) films studied for comparison. Tetragonal distortions are found in all the systems after relaxation. The distortion in the Mn2VIn system persists even for the 17ML thin film, resulting in PMA in the Mn2VIn system. This significant finding has potential to contribute to spin transfer torque (STT) and magnetic random access memory MRAM applications, as materials with PMA derived from volume magnetocrystalline anisotropy are being proposed as ideal magnetic electrodes.http://dx.doi.org/10.1063/1.5007211
collection DOAJ
language English
format Article
sources DOAJ
author Muthui Zipporah
Musembi Robinson
Mwabora Julius
Kashyap Arti
spellingShingle Muthui Zipporah
Musembi Robinson
Mwabora Julius
Kashyap Arti
Perpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio study
AIP Advances
author_facet Muthui Zipporah
Musembi Robinson
Mwabora Julius
Kashyap Arti
author_sort Muthui Zipporah
title Perpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio study
title_short Perpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio study
title_full Perpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio study
title_fullStr Perpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio study
title_full_unstemmed Perpendicular magnetic anisotropy in Mn2VIn (001) films: An ab initio study
title_sort perpendicular magnetic anisotropy in mn2vin (001) films: an ab initio study
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2018-05-01
description First principles study of the magnetic anisotropy of Mn2VIn (001) films show perpendicular magnetic anisotropy (PMA), which increases as a function of the thickness of the film. Density functional theory (DFT) as implemented in the Vienna Ab initio simulation package (VASP) is employed here to perform a comprehensive theoretical investigation of the structural, electronic and magnetic properties of the Mn2VIn(001) films of varying thickness. Our calculations were performed on fully relaxed structures, with five to seventeen mono layers (ML). The degree of spin polarization is higher in the (001) Mn2VIn thin films as compared to the bulk in contrast to what is usually the case and as in Mn2VAl, which is isoelectronic to Mn2VIn as well as inCo2VIn (001) films studied for comparison. Tetragonal distortions are found in all the systems after relaxation. The distortion in the Mn2VIn system persists even for the 17ML thin film, resulting in PMA in the Mn2VIn system. This significant finding has potential to contribute to spin transfer torque (STT) and magnetic random access memory MRAM applications, as materials with PMA derived from volume magnetocrystalline anisotropy are being proposed as ideal magnetic electrodes.
url http://dx.doi.org/10.1063/1.5007211
work_keys_str_mv AT muthuizipporah perpendicularmagneticanisotropyinmn2vin001filmsanabinitiostudy
AT musembirobinson perpendicularmagneticanisotropyinmn2vin001filmsanabinitiostudy
AT mwaborajulius perpendicularmagneticanisotropyinmn2vin001filmsanabinitiostudy
AT kashyaparti perpendicularmagneticanisotropyinmn2vin001filmsanabinitiostudy
_version_ 1716749638388678656