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Neutron Microtomography of MgB$_2$ Superconducting Multifilament Wire

Neutron imaging of sub-10-micrometres spatial resolution has been recently achieved in 2D mode within the framework of the Neutron Microscope project at the Paul Scherrer Institut. Here we report on the development of the PSI Neutron Microscope instrument and the results of the first microtomographi...

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Detalles Bibliográficos
Autores principales: Trtik, Pavel, Scheuerlein, Christian, Alknes, Patrick, Meyer, Michael, Schmid, Florian, Lehmann, Eberhard
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.phpro.2017.06.012
http://cds.cern.ch/record/2318932
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author Trtik, Pavel
Scheuerlein, Christian
Alknes, Patrick
Meyer, Michael
Schmid, Florian
Lehmann, Eberhard
author_facet Trtik, Pavel
Scheuerlein, Christian
Alknes, Patrick
Meyer, Michael
Schmid, Florian
Lehmann, Eberhard
author_sort Trtik, Pavel
collection CERN
description Neutron imaging of sub-10-micrometres spatial resolution has been recently achieved in 2D mode within the framework of the Neutron Microscope project at the Paul Scherrer Institut. Here we report on the development of the PSI Neutron Microscope instrument and the results of the first microtomographic imaging experiment of multifilament superconducting MgB2 wire. The sample of MgB2 superconducting 37 multifilaments embedded in copper-nickel matrix was investigated –in microtomographic mode– with the scientific interest regarding the distribution of boron within the individual superconducting filaments (about 40 μm in diameter). The resulting tomographic dataset revealed the distribution of boron within the entire 0.8 mm thick multifilamental wire with the isotropic voxel size of 2.6 micrometres.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16737972019-09-30T06:29:59Zdoi:10.1016/j.phpro.2017.06.012http://cds.cern.ch/record/2318932engTrtik, PavelScheuerlein, ChristianAlknes, PatrickMeyer, MichaelSchmid, FlorianLehmann, EberhardNeutron Microtomography of MgB$_2$ Superconducting Multifilament WireDetectors and Experimental TechniquesMaterial ScienceNeutron imaging of sub-10-micrometres spatial resolution has been recently achieved in 2D mode within the framework of the Neutron Microscope project at the Paul Scherrer Institut. Here we report on the development of the PSI Neutron Microscope instrument and the results of the first microtomographic imaging experiment of multifilament superconducting MgB2 wire. The sample of MgB2 superconducting 37 multifilaments embedded in copper-nickel matrix was investigated –in microtomographic mode– with the scientific interest regarding the distribution of boron within the individual superconducting filaments (about 40 μm in diameter). The resulting tomographic dataset revealed the distribution of boron within the entire 0.8 mm thick multifilamental wire with the isotropic voxel size of 2.6 micrometres.oai:inspirehep.net:16737972017
spellingShingle Detectors and Experimental Techniques
Material Science
Trtik, Pavel
Scheuerlein, Christian
Alknes, Patrick
Meyer, Michael
Schmid, Florian
Lehmann, Eberhard
Neutron Microtomography of MgB$_2$ Superconducting Multifilament Wire
title Neutron Microtomography of MgB$_2$ Superconducting Multifilament Wire
title_full Neutron Microtomography of MgB$_2$ Superconducting Multifilament Wire
title_fullStr Neutron Microtomography of MgB$_2$ Superconducting Multifilament Wire
title_full_unstemmed Neutron Microtomography of MgB$_2$ Superconducting Multifilament Wire
title_short Neutron Microtomography of MgB$_2$ Superconducting Multifilament Wire
title_sort neutron microtomography of mgb$_2$ superconducting multifilament wire
topic Detectors and Experimental Techniques
Material Science
url https://dx.doi.org/10.1016/j.phpro.2017.06.012
http://cds.cern.ch/record/2318932
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AT meyermichael neutronmicrotomographyofmgb2superconductingmultifilamentwire
AT schmidflorian neutronmicrotomographyofmgb2superconductingmultifilamentwire
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