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Unusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:Mn

Charge states and lattice sites of Fe ions in virgin and Mn-doped Al$_{x}$Ga$_{1−x}$N samples were investigated using $^{57}$Fe emission Mössbauer spectroscopy following radioactive $^{57}$Mn$^{+}$ ion implantation at ISOLDE, CERN. In the undoped Al$_{x}$Ga$_{1−x}$N, Fe$^{2+}$ on Al/Ga sites associa...

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Autores principales: Masenda, Hilary, Gunnlaugsson, Haraldur Páll, Adhikari, Rajdeep, Bharuth-Ram, Krish, Naidoo, Deena, Tarazaga Martín-Luengo, Aitana, Unzueta, Iraultza, Mantovan, Roberto, Mølholt, Torben Esmann, Johnston, Karl, Schell, Juliana, Mokhles Gerami, Adeleh, Krastev, Petko, Qi, Bingcui, Ólafsson, Sveinn, Gíslason, Haflidi Pétur, Ernst, Arthur, Bonanni, Alberta
Lenguaje:eng
Publicado: 2022
Acceso en línea:https://dx.doi.org/10.1088/1367-2630/ac9499
http://cds.cern.ch/record/2836365
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author Masenda, Hilary
Gunnlaugsson, Haraldur Páll
Adhikari, Rajdeep
Bharuth-Ram, Krish
Naidoo, Deena
Tarazaga Martín-Luengo, Aitana
Unzueta, Iraultza
Mantovan, Roberto
Mølholt, Torben Esmann
Johnston, Karl
Schell, Juliana
Mokhles Gerami, Adeleh
Krastev, Petko
Qi, Bingcui
Ólafsson, Sveinn
Gíslason, Haflidi Pétur
Ernst, Arthur
Bonanni, Alberta
author_facet Masenda, Hilary
Gunnlaugsson, Haraldur Páll
Adhikari, Rajdeep
Bharuth-Ram, Krish
Naidoo, Deena
Tarazaga Martín-Luengo, Aitana
Unzueta, Iraultza
Mantovan, Roberto
Mølholt, Torben Esmann
Johnston, Karl
Schell, Juliana
Mokhles Gerami, Adeleh
Krastev, Petko
Qi, Bingcui
Ólafsson, Sveinn
Gíslason, Haflidi Pétur
Ernst, Arthur
Bonanni, Alberta
author_sort Masenda, Hilary
collection CERN
description Charge states and lattice sites of Fe ions in virgin and Mn-doped Al$_{x}$Ga$_{1−x}$N samples were investigated using $^{57}$Fe emission Mössbauer spectroscopy following radioactive $^{57}$Mn$^{+}$ ion implantation at ISOLDE, CERN. In the undoped Al$_{x}$Ga$_{1−x}$N, Fe$^{2+}$ on Al/Ga sites associated with nitrogen vacancies and Fe$^{3+}$ on substitutional Al/Ga sites are identified. With Mn doping, the contribution of Fe$^{3+}$ is considerably reduced and replaced instead by a corresponding emergence of a single-line-like component consistent with Fe$^{4+}$ on Al/Ga sites. Density functional theory calculations confirm the Fe$^{4+}$ charge state as stabilised by the presence of substitutional Mn$^{2+}$ in its vicinity. The completely filled spin up orbitals in Mn$^{2+}$ (3d$^{5}$) are expected to enhance magnetic exchange interactions. The population of the Fe$^{4+}$ state is less pronounced at high Al concentration in Al$_{x}$Ga$_{1−x}$N:Mn, a behaviour attributable to hybridisation effects of 3d states to the semiconductor bands which weakens with increasing (decreasing) Al (Ga) content. Our results demonstrate that co-doping promotes the co-existence of unusual charge states of Fe$^{4+}$ and Mn$^{2+}$, whereas their trivalent charge states prevail with either transition metal incorporated independently in III-nitrides. Co-doping thus opens up a new avenue for tailoring novel magnetic properties in doped semiconductors.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28363652023-03-31T09:58:48Zdoi:10.1088/1367-2630/ac9499http://cds.cern.ch/record/2836365engMasenda, HilaryGunnlaugsson, Haraldur PállAdhikari, RajdeepBharuth-Ram, KrishNaidoo, DeenaTarazaga Martín-Luengo, AitanaUnzueta, IraultzaMantovan, RobertoMølholt, Torben EsmannJohnston, KarlSchell, JulianaMokhles Gerami, AdelehKrastev, PetkoQi, BingcuiÓlafsson, SveinnGíslason, Haflidi PéturErnst, ArthurBonanni, AlbertaUnusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:MnCharge states and lattice sites of Fe ions in virgin and Mn-doped Al$_{x}$Ga$_{1−x}$N samples were investigated using $^{57}$Fe emission Mössbauer spectroscopy following radioactive $^{57}$Mn$^{+}$ ion implantation at ISOLDE, CERN. In the undoped Al$_{x}$Ga$_{1−x}$N, Fe$^{2+}$ on Al/Ga sites associated with nitrogen vacancies and Fe$^{3+}$ on substitutional Al/Ga sites are identified. With Mn doping, the contribution of Fe$^{3+}$ is considerably reduced and replaced instead by a corresponding emergence of a single-line-like component consistent with Fe$^{4+}$ on Al/Ga sites. Density functional theory calculations confirm the Fe$^{4+}$ charge state as stabilised by the presence of substitutional Mn$^{2+}$ in its vicinity. The completely filled spin up orbitals in Mn$^{2+}$ (3d$^{5}$) are expected to enhance magnetic exchange interactions. The population of the Fe$^{4+}$ state is less pronounced at high Al concentration in Al$_{x}$Ga$_{1−x}$N:Mn, a behaviour attributable to hybridisation effects of 3d states to the semiconductor bands which weakens with increasing (decreasing) Al (Ga) content. Our results demonstrate that co-doping promotes the co-existence of unusual charge states of Fe$^{4+}$ and Mn$^{2+}$, whereas their trivalent charge states prevail with either transition metal incorporated independently in III-nitrides. Co-doping thus opens up a new avenue for tailoring novel magnetic properties in doped semiconductors.oai:cds.cern.ch:28363652022
spellingShingle Masenda, Hilary
Gunnlaugsson, Haraldur Páll
Adhikari, Rajdeep
Bharuth-Ram, Krish
Naidoo, Deena
Tarazaga Martín-Luengo, Aitana
Unzueta, Iraultza
Mantovan, Roberto
Mølholt, Torben Esmann
Johnston, Karl
Schell, Juliana
Mokhles Gerami, Adeleh
Krastev, Petko
Qi, Bingcui
Ólafsson, Sveinn
Gíslason, Haflidi Pétur
Ernst, Arthur
Bonanni, Alberta
Unusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:Mn
title Unusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:Mn
title_full Unusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:Mn
title_fullStr Unusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:Mn
title_full_unstemmed Unusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:Mn
title_short Unusual charge states and lattice sites of Fe in Al$_{x}$Ga$_{1−x}$N:Mn
title_sort unusual charge states and lattice sites of fe in al$_{x}$ga$_{1−x}$n:mn
url https://dx.doi.org/10.1088/1367-2630/ac9499
http://cds.cern.ch/record/2836365
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