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Fine tuning of the magnetic properties in Mn3-xCoxGa Heusler films near the critical regime

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Alternative Title
Fine tuning of the magnetic properties in Mn3-xCoxGa Heusler films near the critical regime
Abstract
Tunability of structural and magnetic properties of Mn3-xCoxGa films is presented by Co substitution, where critical behavior emerges 0.37 ≤ x ≤ 0.56 exhibiting a transition from tetragonal hard ferrimagnetic with per- pendicular magnetic anisotropy (PMA) to a cubic soft ferrimagnetic phase with in-plane magnetic anisotropy (IMA). In the critical regime, coexisting state of tetragonal and cubic phases possesses significantly low coercive field (HC = 1.9 kOe) with relatively low saturation magnetization (MS = 100~150 emu/cc) while maintaining the PMA. From first-principles calculations, moments of two Mn sites do not change upon Co substitution. However, moments of substituted Co almost vanish in tetragonal while giving around 1 μB in cubic phase, which agrees with overall MS behaviors of the experimental results. These findings not only uncover the hidden magnetic state in Mn3-xCoxGa by altering the parallel and antiparallel coupling between Mn and Co, but also provide an additional degree of freedom for spintronic applications using Mn-based Heusler compounds.
Author(s)
이규준유우석웬 티 꾸인 안방현우김현수Mathias Klaeui임성현정명화
Issued Date
2021
Type
Article
Keyword
Critical behaviorHeusler compoundPerpendicular magnetic anisotropy
DOI
10.1016/j.jallcom.2020.158288
URI
https://oak.ulsan.ac.kr/handle/2021.oak/9493
https://ulsan-primo.hosted.exlibrisgroup.com/primo-explore/fulldisplay?docid=TN_cdi_elsevier_sciencedirect_doi_10_1016_j_jallcom_2020_158288&context=PC&vid=ULSAN&lang=ko_KR&search_scope=default_scope&adaptor=primo_central_multiple_fe&tab=default_tab&query=any,contains,Fine%20tuning%20of%20the%20magnetic%20properties%20in%20Mn3-xCoxGa%20Heusler%20films%20near%20the%20critical%20regime&offset=0&pcAvailability=true
Publisher
JOURNAL OF ALLOYS AND COMPOUNDS
Location
스위스
Language
영어
ISSN
0925-8388
Citation Volume
858
Citation Number
1
Citation Start Page
158288
Citation End Page
158288
Appears in Collections:
Natural Science > Physics
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