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$^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$

$^57$Fe emission Mössbauer spectroscopy has been applied to study the lattice location and properties of Fe in gadolinium gallium garnet $Gd_3 Ga_5 O_{12}$ (GGG) single crystals in the temperature interval 300 – 563 K within the extremely dilute (<10$^{−4}$ at.%) regime following the implantation...

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Autores principales: Krastev, P B, Gunnlaugsson, H P, Nomura, K, Adoons, V, Gerami, A M, Johnston, K, Ncube, M, Mantovan, R, Masenda, H, Matveyev, Y A, Mølholt, T E, Unzueta, I, Bharuth-Ram, K, Gislason, H, Langouche, G, Naidoo, D, Olafsson, S
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1007/s10751-016-1266-9
http://cds.cern.ch/record/2665638
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author Krastev, P B
Gunnlaugsson, H P
Nomura, K
Adoons, V
Gerami, A M
Johnston, K
Ncube, M
Mantovan, R
Masenda, H
Matveyev, Y A
Mølholt, T E
Unzueta, I
Bharuth-Ram, K
Gislason, H
Langouche, G
Naidoo, D
Olafsson, S
author_facet Krastev, P B
Gunnlaugsson, H P
Nomura, K
Adoons, V
Gerami, A M
Johnston, K
Ncube, M
Mantovan, R
Masenda, H
Matveyev, Y A
Mølholt, T E
Unzueta, I
Bharuth-Ram, K
Gislason, H
Langouche, G
Naidoo, D
Olafsson, S
author_sort Krastev, P B
collection CERN
description $^57$Fe emission Mössbauer spectroscopy has been applied to study the lattice location and properties of Fe in gadolinium gallium garnet $Gd_3 Ga_5 O_{12}$ (GGG) single crystals in the temperature interval 300 – 563 K within the extremely dilute (<10$^{−4}$ at.%) regime following the implantation of$^{57}$Mn (T$_{1 / 2}$= 1.5 min.) at ISOLDE/CERN. These results are compared with earlier Mössbauer spectroscopy study of Fe-doped gadolinium gallium garnet $Gd_3 Ga_5 O_{12}$(GGG), with implantation fluences between 8×10$^{15}$ and 6×10$^{16}$ atoms cm $^{−2}$. Three Fe components are observed in the emission Mössbauer spectra: (i) high spin Fe$^{2+}$ located at damage sites due to the implantation process, (ii) high spin Fe$^{3+}$ at substitutional tetrahedral Ga sites, and (iii) interstitial Fe, probably due to the recoil imparted on the daughter $^{57∗}$Fe nucleus in the $\beta^−$ decay of $^{57}$Mn. In contrast to high fluence $^{57}$Fe implantation studies the Fe3+ ions are found to prefer the tetrahedral Ga site over the octahedral Ga site. No annealing stages are evident in the temperature range investigated. Despite the very low concentration, high-spin Fe$^{3+}$ shows fast spin relaxation, presumably due to an indirect interaction between nearby gadolinium atoms.
id oai-inspirehep.net-1723375
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-17233752019-09-30T06:29:59Zdoi:10.1007/s10751-016-1266-9http://cds.cern.ch/record/2665638engKrastev, P BGunnlaugsson, H PNomura, KAdoons, VGerami, A MJohnston, KNcube, MMantovan, RMasenda, HMatveyev, Y AMølholt, T EUnzueta, IBharuth-Ram, KGislason, HLangouche, GNaidoo, DOlafsson, S$^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$Physics in General$^57$Fe emission Mössbauer spectroscopy has been applied to study the lattice location and properties of Fe in gadolinium gallium garnet $Gd_3 Ga_5 O_{12}$ (GGG) single crystals in the temperature interval 300 – 563 K within the extremely dilute (<10$^{−4}$ at.%) regime following the implantation of$^{57}$Mn (T$_{1 / 2}$= 1.5 min.) at ISOLDE/CERN. These results are compared with earlier Mössbauer spectroscopy study of Fe-doped gadolinium gallium garnet $Gd_3 Ga_5 O_{12}$(GGG), with implantation fluences between 8×10$^{15}$ and 6×10$^{16}$ atoms cm $^{−2}$. Three Fe components are observed in the emission Mössbauer spectra: (i) high spin Fe$^{2+}$ located at damage sites due to the implantation process, (ii) high spin Fe$^{3+}$ at substitutional tetrahedral Ga sites, and (iii) interstitial Fe, probably due to the recoil imparted on the daughter $^{57∗}$Fe nucleus in the $\beta^−$ decay of $^{57}$Mn. In contrast to high fluence $^{57}$Fe implantation studies the Fe3+ ions are found to prefer the tetrahedral Ga site over the octahedral Ga site. No annealing stages are evident in the temperature range investigated. Despite the very low concentration, high-spin Fe$^{3+}$ shows fast spin relaxation, presumably due to an indirect interaction between nearby gadolinium atoms.oai:inspirehep.net:17233752016
spellingShingle Physics in General
Krastev, P B
Gunnlaugsson, H P
Nomura, K
Adoons, V
Gerami, A M
Johnston, K
Ncube, M
Mantovan, R
Masenda, H
Matveyev, Y A
Mølholt, T E
Unzueta, I
Bharuth-Ram, K
Gislason, H
Langouche, G
Naidoo, D
Olafsson, S
$^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$
title $^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$
title_full $^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$
title_fullStr $^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$
title_full_unstemmed $^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$
title_short $^{57}$ Fe Emission Mössbauer Study on $Gd_3 Ga_5 O_{12}$ implanted with dilute $^{57} Mn$
title_sort $^{57}$ fe emission mössbauer study on $gd_3 ga_5 o_{12}$ implanted with dilute $^{57} mn$
topic Physics in General
url https://dx.doi.org/10.1007/s10751-016-1266-9
http://cds.cern.ch/record/2665638
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