Cargando…
Compositional Dependence of Epitaxial L 1 0 ‐Mn x Ga Magnetic Properties as Probed by 57 Mn/Fe and 119 In/Sn Emission Mössbauer Spectroscopy
The magnetic properties of MnxGa alloys critically depend on compositionx, andthe atomic-scale origin of those dependences is still not fully disclosed. Molecularbeam epitaxy has been used to produce a set of MnxGa samples (x¼0.7÷1.9)with strong perpendicular magnetic anisotropy, and controllable sa...
Autores principales: | , , , , , , , , , , , , , , , , |
---|---|
Lenguaje: | eng |
Publicado: |
2022
|
Materias: | |
Acceso en línea: | https://dx.doi.org/10.1002/pssb.202200121 http://cds.cern.ch/record/2852715 |
_version_ | 1780977163728584704 |
---|---|
author | Unzueta, Iraultza Gunnlaugsson, Haraldur Pall Mølholt, Torben Esmann Masenda, Hilary Mokhles Gerami, Adeleh Krastev, Petko Zyabkin, Dmitry V Bharuth-Ram, Krish Naidoo, Deena Ólafsson, Sveinn Plazaola, Fernando Schell, Juliana Qi, Bingcui Zhao, Xupeng Xiao, Jiaxing Zhao, Jianhua Mantovan, Roberto |
author_facet | Unzueta, Iraultza Gunnlaugsson, Haraldur Pall Mølholt, Torben Esmann Masenda, Hilary Mokhles Gerami, Adeleh Krastev, Petko Zyabkin, Dmitry V Bharuth-Ram, Krish Naidoo, Deena Ólafsson, Sveinn Plazaola, Fernando Schell, Juliana Qi, Bingcui Zhao, Xupeng Xiao, Jiaxing Zhao, Jianhua Mantovan, Roberto |
author_sort | Unzueta, Iraultza |
collection | CERN |
description | The magnetic properties of MnxGa alloys critically depend on compositionx, andthe atomic-scale origin of those dependences is still not fully disclosed. Molecularbeam epitaxy has been used to produce a set of MnxGa samples (x¼0.7÷1.9)with strong perpendicular magnetic anisotropy, and controllable saturationmagnetization and coercivefield depending onx. By conducting57Mn/Fe and119In/Sn emission Mössbauer spectroscopy at ISOLDE/CERN, the Mn and Gasite-specific chemical, structural, and magnetic properties of MnxGa are inves-tigated as a function ofx, and correlated with the magnetic properties asmeasured by superconducting quantum interference device magnetometry.Hyperfine magneticfields of Mn/Fe (either at Mn or Ga sites) are found to begreatly influenced by the local strain induced by the implantation. However,In/Sn probes show clear angular dependence, demonstrating a huge transferreddipolar hyperfinefield to the Ga sites. A clear increase of the occupancy of Galattice sites by Mn forx>1 is observed, and identified as the origin for theincreased antiferromagnetic coupling between Mn and Mn at Ga sites that lowersthe samples’magnetization. The results shed further light on the atomic-scalemechanisms driving the compositional dependence of magnetism in MnxGa. |
id | cern-2852715 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28527152023-03-21T15:35:24Zdoi:10.1002/pssb.202200121http://cds.cern.ch/record/2852715engUnzueta, IraultzaGunnlaugsson, Haraldur PallMølholt, Torben EsmannMasenda, HilaryMokhles Gerami, AdelehKrastev, PetkoZyabkin, Dmitry VBharuth-Ram, KrishNaidoo, DeenaÓlafsson, SveinnPlazaola, FernandoSchell, JulianaQi, BingcuiZhao, XupengXiao, JiaxingZhao, JianhuaMantovan, RobertoCompositional Dependence of Epitaxial L 1 0 ‐Mn x Ga Magnetic Properties as Probed by 57 Mn/Fe and 119 In/Sn Emission Mössbauer SpectroscopyNuclear Physics - ExperimentThe magnetic properties of MnxGa alloys critically depend on compositionx, andthe atomic-scale origin of those dependences is still not fully disclosed. Molecularbeam epitaxy has been used to produce a set of MnxGa samples (x¼0.7÷1.9)with strong perpendicular magnetic anisotropy, and controllable saturationmagnetization and coercivefield depending onx. By conducting57Mn/Fe and119In/Sn emission Mössbauer spectroscopy at ISOLDE/CERN, the Mn and Gasite-specific chemical, structural, and magnetic properties of MnxGa are inves-tigated as a function ofx, and correlated with the magnetic properties asmeasured by superconducting quantum interference device magnetometry.Hyperfine magneticfields of Mn/Fe (either at Mn or Ga sites) are found to begreatly influenced by the local strain induced by the implantation. However,In/Sn probes show clear angular dependence, demonstrating a huge transferreddipolar hyperfinefield to the Ga sites. A clear increase of the occupancy of Galattice sites by Mn forx>1 is observed, and identified as the origin for theincreased antiferromagnetic coupling between Mn and Mn at Ga sites that lowersthe samples’magnetization. The results shed further light on the atomic-scalemechanisms driving the compositional dependence of magnetism in MnxGa.oai:cds.cern.ch:28527152022 |
spellingShingle | Nuclear Physics - Experiment Unzueta, Iraultza Gunnlaugsson, Haraldur Pall Mølholt, Torben Esmann Masenda, Hilary Mokhles Gerami, Adeleh Krastev, Petko Zyabkin, Dmitry V Bharuth-Ram, Krish Naidoo, Deena Ólafsson, Sveinn Plazaola, Fernando Schell, Juliana Qi, Bingcui Zhao, Xupeng Xiao, Jiaxing Zhao, Jianhua Mantovan, Roberto Compositional Dependence of Epitaxial L 1 0 ‐Mn x Ga Magnetic Properties as Probed by 57 Mn/Fe and 119 In/Sn Emission Mössbauer Spectroscopy |
title | Compositional Dependence of Epitaxial
L
1
0
‐Mn
x
Ga Magnetic Properties as Probed by
57
Mn/Fe and
119
In/Sn Emission Mössbauer Spectroscopy |
title_full | Compositional Dependence of Epitaxial
L
1
0
‐Mn
x
Ga Magnetic Properties as Probed by
57
Mn/Fe and
119
In/Sn Emission Mössbauer Spectroscopy |
title_fullStr | Compositional Dependence of Epitaxial
L
1
0
‐Mn
x
Ga Magnetic Properties as Probed by
57
Mn/Fe and
119
In/Sn Emission Mössbauer Spectroscopy |
title_full_unstemmed | Compositional Dependence of Epitaxial
L
1
0
‐Mn
x
Ga Magnetic Properties as Probed by
57
Mn/Fe and
119
In/Sn Emission Mössbauer Spectroscopy |
title_short | Compositional Dependence of Epitaxial
L
1
0
‐Mn
x
Ga Magnetic Properties as Probed by
57
Mn/Fe and
119
In/Sn Emission Mössbauer Spectroscopy |
title_sort | compositional dependence of epitaxial
l
1
0
‐mn
x
ga magnetic properties as probed by
57
mn/fe and
119
in/sn emission mössbauer spectroscopy |
topic | Nuclear Physics - Experiment |
url | https://dx.doi.org/10.1002/pssb.202200121 http://cds.cern.ch/record/2852715 |
work_keys_str_mv | AT unzuetairaultza compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT gunnlaugssonharaldurpall compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT mølholttorbenesmann compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT masendahilary compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT mokhlesgeramiadeleh compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT krastevpetko compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT zyabkindmitryv compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT bharuthramkrish compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT naidoodeena compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT olafssonsveinn compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT plazaolafernando compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT schelljuliana compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT qibingcui compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT zhaoxupeng compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT xiaojiaxing compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT zhaojianhua compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy AT mantovanroberto compositionaldependenceofepitaxiall10mnxgamagneticpropertiesasprobedby57mnfeand119insnemissionmossbauerspectroscopy |