Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopy

The room temperature Mössbauer spectra of 57Fe were measured for numerous dilute iron-based alloys Fe1−xDx (D = Al, Co, Cr, Mn, Mo, Ni, Os, Pt, Re, Ru, Ta, Ti, V, W, Zn), annealed at 1270 K for 2 h before the measurements. The spectra were analyzed using the Hesse–Rübartsch method in order to determ...

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Main Authors: Idczak Rafał, Konieczny Robert, Chojcan Jan
Format: Article
Language:English
Published: Sciendo 2015-03-01
Series:Nukleonika
Subjects:
Online Access:https://doi.org/10.1515/nuka-2015-0010
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author Idczak Rafał
Konieczny Robert
Chojcan Jan
author_facet Idczak Rafał
Konieczny Robert
Chojcan Jan
author_sort Idczak Rafał
collection DOAJ
description The room temperature Mössbauer spectra of 57Fe were measured for numerous dilute iron-based alloys Fe1−xDx (D = Al, Co, Cr, Mn, Mo, Ni, Os, Pt, Re, Ru, Ta, Ti, V, W, Zn), annealed at 1270 K for 2 h before the measurements. The spectra were analyzed using the Hesse–Rübartsch method in order to determine the mean hyperfine magnetic field <B> at the 57Fe nuclei as a function of concentration x of the minority component of the alloy. As the binary alloys are one-faze solid solutions of an element D in iron, a linear relationship between <B> and x is observed. The result supports the suggestion that Mössbauer spectroscopy is a useful tool for the study of dissolution of different elements in iron.
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spelling doaj.art-c53251daa8c94b01b5f739f919b9f79c2022-12-22T01:41:44ZengSciendoNukleonika0029-59222015-03-01601394210.1515/nuka-2015-0010nuka-2015-0010Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopyIdczak Rafał0Konieczny Robert1Chojcan Jan2Institute of Experimental Physics, University of Wrocław, 9 M. Borna Sq., 50-204 Wrocław, Poland, Tel.: +48 71 375 9336, Fax: +48 71 328 7365Institute of Experimental Physics, University of Wrocław, 9 M. Borna Sq., 50-204 Wrocław, Poland, Tel.: +48 71 375 9336, Fax: +48 71 328 7365Institute of Experimental Physics, University of Wrocław, 9 M. Borna Sq., 50-204 Wrocław, Poland, Tel.: +48 71 375 9336, Fax: +48 71 328 7365The room temperature Mössbauer spectra of 57Fe were measured for numerous dilute iron-based alloys Fe1−xDx (D = Al, Co, Cr, Mn, Mo, Ni, Os, Pt, Re, Ru, Ta, Ti, V, W, Zn), annealed at 1270 K for 2 h before the measurements. The spectra were analyzed using the Hesse–Rübartsch method in order to determine the mean hyperfine magnetic field <B> at the 57Fe nuclei as a function of concentration x of the minority component of the alloy. As the binary alloys are one-faze solid solutions of an element D in iron, a linear relationship between <B> and x is observed. The result supports the suggestion that Mössbauer spectroscopy is a useful tool for the study of dissolution of different elements in iron.https://doi.org/10.1515/nuka-2015-0010hyperfine interactionsiron alloysmössbauer spectroscopy
spellingShingle Idczak Rafał
Konieczny Robert
Chojcan Jan
Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopy
Nukleonika
hyperfine interactions
iron alloys
mössbauer spectroscopy
title Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopy
title_full Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopy
title_fullStr Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopy
title_full_unstemmed Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopy
title_short Mean hyperfine fields at 57Fe in dilute iron-based alloys studied by Mössbauer spectroscopy
title_sort mean hyperfine fields at 57fe in dilute iron based alloys studied by mossbauer spectroscopy
topic hyperfine interactions
iron alloys
mössbauer spectroscopy
url https://doi.org/10.1515/nuka-2015-0010
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AT koniecznyrobert meanhyperfinefieldsat57feindiluteironbasedalloysstudiedbymossbauerspectroscopy
AT chojcanjan meanhyperfinefieldsat57feindiluteironbasedalloysstudiedbymossbauerspectroscopy