Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloy

The effect of an external magnetic field (B=0.5 T) on Fe90Cr10 specimens during Fe ion irradiation, has been investigated by means of Conversion Electron Mössbauer Spectroscopy (CEMS). The analysis has revealed significant differences in the average hyperfine magnetic field (<∆H>=0.3 T) betwee...

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Main Authors: Fernando José Sánchez, Isabel García-Cortés, José Francisco Marco, David Jiménez-Rey, Aránzazu Maira, Jesús Castellanos, Rafael Vila, Ángel Ibarra
Format: Article
Language:English
Published: Elsevier 2016-12-01
Series:Nuclear Materials and Energy
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352179115300430
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spelling doaj-2c88624a76b8473ba278528dbc6d21192020-11-24T23:44:28ZengElsevierNuclear Materials and Energy2352-17912016-12-019C47647910.1016/j.nme.2016.05.010Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloyFernando José Sánchez0Isabel García-Cortés1José Francisco Marco2David Jiménez-Rey3Aránzazu Maira4Jesús Castellanos5Rafael Vila6Ángel Ibarra7Laboratorio Nacional de Fusión, CIEMAT, Avda. Complutense 40, 28040 Madrid SpainLaboratorio Nacional de Fusión, CIEMAT, Avda. Complutense 40, 28040 Madrid SpainInstituto de Química Física “Rocasolano”, CSIC, Calle Serrano 119, 28006 Madrid SpainLaboratorio Nacional de Fusión, CIEMAT, Avda. Complutense 40, 28040 Madrid SpainCentro de Micro Análisis de Materiales-UAM, Calle Faraday 3, Cantoblanco, 28049 Madrid SpainLaboratorio Nacional de Fusión, CIEMAT, Avda. Complutense 40, 28040 Madrid SpainLaboratorio Nacional de Fusión, CIEMAT, Avda. Complutense 40, 28040 Madrid SpainLaboratorio Nacional de Fusión, CIEMAT, Avda. Complutense 40, 28040 Madrid SpainThe effect of an external magnetic field (B=0.5 T) on Fe90Cr10 specimens during Fe ion irradiation, has been investigated by means of Conversion Electron Mössbauer Spectroscopy (CEMS). The analysis has revealed significant differences in the average hyperfine magnetic field (<∆H>=0.3 T) between non-irradiated and irradiated samples as well as between irradiations made with B (w/ B) and without B (w/o B). It is considered that these variations can be due to changes in the local environment around the probe nuclei (57Fe); where vacancies and Cr distribution play a role. The results indicate that the Cr distribution in the neighbourhood of the iron atoms could be changed by the application of an external field. This would imply that an external magnetic field may be an important parameter to take into account in predictive models for Cr behaviour in Fe–Cr alloys, and especially in fusion conditions where intense magnetic fields are required for plasma confinement.http://www.sciencedirect.com/science/article/pii/S2352179115300430Fe–Cr alloysSelf-ion irradiationExternal magnetic fieldMössbauer spectroscopyCr clustering
collection DOAJ
language English
format Article
sources DOAJ
author Fernando José Sánchez
Isabel García-Cortés
José Francisco Marco
David Jiménez-Rey
Aránzazu Maira
Jesús Castellanos
Rafael Vila
Ángel Ibarra
spellingShingle Fernando José Sánchez
Isabel García-Cortés
José Francisco Marco
David Jiménez-Rey
Aránzazu Maira
Jesús Castellanos
Rafael Vila
Ángel Ibarra
Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloy
Nuclear Materials and Energy
Fe–Cr alloys
Self-ion irradiation
External magnetic field
Mössbauer spectroscopy
Cr clustering
author_facet Fernando José Sánchez
Isabel García-Cortés
José Francisco Marco
David Jiménez-Rey
Aránzazu Maira
Jesús Castellanos
Rafael Vila
Ángel Ibarra
author_sort Fernando José Sánchez
title Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloy
title_short Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloy
title_full Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloy
title_fullStr Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloy
title_full_unstemmed Influence of an external magnetic field on damage by self-ion irradiation in Fe90Cr10 alloy
title_sort influence of an external magnetic field on damage by self-ion irradiation in fe90cr10 alloy
publisher Elsevier
series Nuclear Materials and Energy
issn 2352-1791
publishDate 2016-12-01
description The effect of an external magnetic field (B=0.5 T) on Fe90Cr10 specimens during Fe ion irradiation, has been investigated by means of Conversion Electron Mössbauer Spectroscopy (CEMS). The analysis has revealed significant differences in the average hyperfine magnetic field (<∆H>=0.3 T) between non-irradiated and irradiated samples as well as between irradiations made with B (w/ B) and without B (w/o B). It is considered that these variations can be due to changes in the local environment around the probe nuclei (57Fe); where vacancies and Cr distribution play a role. The results indicate that the Cr distribution in the neighbourhood of the iron atoms could be changed by the application of an external field. This would imply that an external magnetic field may be an important parameter to take into account in predictive models for Cr behaviour in Fe–Cr alloys, and especially in fusion conditions where intense magnetic fields are required for plasma confinement.
topic Fe–Cr alloys
Self-ion irradiation
External magnetic field
Mössbauer spectroscopy
Cr clustering
url http://www.sciencedirect.com/science/article/pii/S2352179115300430
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