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1.
Anisotropy of the Electric Field Gradient in Two-Dimensional α-MoO$_3$ Investigated by $^{57}$Mn($^{57}$Fe) Emission Mössbauer Spectroscopy / Schell, Juliana (CERN ; Duisburg-Essen U.) ; Zyabkin, Dmitry (Ilmenau Tech. U.) ; Bharuth-Ram, Krish (KwaZulu Natal U.) ; Gonçalves, João N (Aveiro U.) ; Díaz-Guerra, Carlos (Madrid U.) ; Gunnlaugsson, Haraldur P (Iceland U.) ; Martín-Luengo, Aitana Tarazaga (Linz U.) ; Schaaf, Peter (Ilmenau Tech. U.) ; Bonanni, Alberta (Linz U.) ; Masenda, Hilary (Witwatersrand U. ; Philipps U. Marburg) et al.
Van der Waals α-MoO3 samples offer a wide range of attractive catalytic, electronic, and optical properties. We present herein an emission Mössbauer spectroscopy (eMS) study of the electric-field gradient (EFG) anisotropy in crystalline free-standing α-MoO3 samples. [...]
2022 - 13 p. - Published in : Crystals 12 (2022) 942 Fulltext: PDF;
2.
Magnetic Structure and Strain State in Fe/V Superlattices Studied by $^{57}$Fe$^+$ Emission and Conversion Electron Mössbauer Spectroscopy / Mølholt, Torben E (Iceland U. ; CERN) ; Ólafsson, Sveinn (Iceland U.) ; Gunnlaugsson, Haraldur P (Iceland U.) ; Qi, Bingcui (Iceland U.) ; Johnston, Karl (CERN) ; Mantovan, Roberto (IMM, Bologna) ; Masenda, Hilary (Witwatersrand U.) ; Bharuth-Ram, Krish (DUT, Durban) ; Gíslason, Hafliði P (Iceland U.) ; Langouche, Guido (Leuven U.) et al.
The magnetic properties of the Fe/V superlattices were studied by conventional Conversion Electron Mössbauer Spectroscopy (CEMS) and online 57Fe+ emission Mössbauer Spectroscopy (eMS) at room temperature (RT) at ISOLDE/CERN. The unique depth-enhanced sensitivity and ultradiluted regime of the probe atoms adopted in this eMS facility enabled the investigation of the magnetic structures and the strain state in the superlattice layers and at the interfaces. [...]
2022 - 15 p. - Published in : Crystals 12 (2022) 961 Fulltext: PDF;
3.
Lattice sites, charge and spin states of Fe in In$_{x}$Ga$_{1-x}$N studied with emission Mössbauer spectroscopy / Masenda, Hilary (School of Physics, University of the Witwatersrand) ; Gunnlaugsson, Haraldur Páll (Science Institute, University of Iceland) ; Naidoo, Deena (School of Physics, University of the Witwatersrand) ; Bharuth-Ram, Krish (School of Physics, Durban University of Technology) ; Mantovan, Roberto (Laboratorio MDM, IMM-CNR,) ; Gíslason, Hafliði Pétur (Science Institute, University of Iceland) ; Vantomme, André (Instituut voor Kern-en Stralings fysika, KU Leuven) ; Bonanni, Alberta (Institute for Semiconductor and Solid State Physics, Johannes Kepler University) ; Adhikari, Rajdeep (Institute for Semiconductor and Solid State Physics, Johannes Kepler University) ; Bockstedte, Michel (Institute for Theoretical Physics, Johannes Kepler University) et al.
CERN-INTC-2020-006 ; INTC-SR-101.
- 2020.
Fulltext - Original Document (INTC-P-485)

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3 Gislason, H
1 Gislason, H P
16 Gislason, H P
1 Gislason, H. P.
1 Gislason, HP
1 Gislason, Haflidi
1 Gislason, Haflidi P
2 Gislason, Haflidi Petur
16 Gíslason, H P
2 Gíslason, Haflidi Pétur
1 Gíslason, Hafliði Pétur
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