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The WITCH experiment: Acquiring the first recoil ion spectrum

The standard model of the electroweak interaction describes beta-decay in the well-known V-A form. Nevertheless, the most general Hamiltonian of a beta-decay includes also other possible interaction types, e.g. scalar (S) and tensor (T) contributions, which are not fully ruled out yet experimentally...

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Detalles Bibliográficos
Autores principales: Kozlov, V.Yu., Beck, M., Coeck, S., Delahaye, P., Friedag, P., Herbane, M., Herlert, A., Kraev, I.S., Tandecki, M., Van Gorp, S., Wauters, F., Weinheimer, Ch., Wenander, F., Zakoucky, D., Severijns, N.
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nimb.2008.05.150
http://cds.cern.ch/record/1116712
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author Kozlov, V.Yu.
Beck, M.
Coeck, S.
Delahaye, P.
Friedag, P.
Herbane, M.
Herlert, A.
Kraev, I.S.
Tandecki, M.
Van Gorp, S.
Wauters, F.
Weinheimer, Ch.
Wenander, F.
Zakoucky, D.
Severijns, N.
author_facet Kozlov, V.Yu.
Beck, M.
Coeck, S.
Delahaye, P.
Friedag, P.
Herbane, M.
Herlert, A.
Kraev, I.S.
Tandecki, M.
Van Gorp, S.
Wauters, F.
Weinheimer, Ch.
Wenander, F.
Zakoucky, D.
Severijns, N.
author_sort Kozlov, V.Yu.
collection CERN
description The standard model of the electroweak interaction describes beta-decay in the well-known V-A form. Nevertheless, the most general Hamiltonian of a beta-decay includes also other possible interaction types, e.g. scalar (S) and tensor (T) contributions, which are not fully ruled out yet experimentally. The WITCH experiment aims to study a possible admixture of these exotic interaction types in nuclear beta-decay by a precise measurement of the shape of the recoil ion energy spectrum. The experimental set-up couples a double Penning trap system and a retardation spectrometer. The set-up is installed in ISOLDE/CERN and was recently shown to be fully operational. The current status of the experiment is presented together with the data acquired during the 2006 campaign, showing the first recoil ion energy spectrum obtained. The data taking procedure and corresponding data acquisition system are described in more detail. Several further technical improvements are briefly reviewed.
id cern-1116712
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
record_format invenio
spelling cern-11167122021-11-05T06:14:54Zdoi:10.1016/j.nimb.2008.05.150http://cds.cern.ch/record/1116712engKozlov, V.Yu.Beck, M.Coeck, S.Delahaye, P.Friedag, P.Herbane, M.Herlert, A.Kraev, I.S.Tandecki, M.Van Gorp, S.Wauters, F.Weinheimer, Ch.Wenander, F.Zakoucky, D.Severijns, N.The WITCH experiment: Acquiring the first recoil ion spectrumNuclear Physics - ExperimentThe standard model of the electroweak interaction describes beta-decay in the well-known V-A form. Nevertheless, the most general Hamiltonian of a beta-decay includes also other possible interaction types, e.g. scalar (S) and tensor (T) contributions, which are not fully ruled out yet experimentally. The WITCH experiment aims to study a possible admixture of these exotic interaction types in nuclear beta-decay by a precise measurement of the shape of the recoil ion energy spectrum. The experimental set-up couples a double Penning trap system and a retardation spectrometer. The set-up is installed in ISOLDE/CERN and was recently shown to be fully operational. The current status of the experiment is presented together with the data acquired during the 2006 campaign, showing the first recoil ion energy spectrum obtained. The data taking procedure and corresponding data acquisition system are described in more detail. Several further technical improvements are briefly reviewed.The standard model of the electroweak interaction describes beta-decay in the well-known V-A form. Nevertheless, the most general Hamiltonian of a beta-decay includes also other possible interaction types, e.g. scalar (S) and tensor (T) contributions, which are not fully ruled out yet experimentally. The WITCH experiment aims to study a possible admixture of these exotic interaction types in nuclear beta-decay by a precise measurement of the shape of the recoil ion energy spectrum. The experimental set-up couples a double Penning trap system and a retardation spectrometer. The set-up is installed in ISOLDE/CERN and was recently shown to be fully operational. The current status of the experiment is presented together with the data acquired during the 2006 campaign, showing the first recoil ion energy spectrum obtained. The data taking procedure and corresponding data acquisition system are described in more detail. Several further technical improvements are briefly reviewed.arXiv:0807.3421oai:cds.cern.ch:11167122008-07-23
spellingShingle Nuclear Physics - Experiment
Kozlov, V.Yu.
Beck, M.
Coeck, S.
Delahaye, P.
Friedag, P.
Herbane, M.
Herlert, A.
Kraev, I.S.
Tandecki, M.
Van Gorp, S.
Wauters, F.
Weinheimer, Ch.
Wenander, F.
Zakoucky, D.
Severijns, N.
The WITCH experiment: Acquiring the first recoil ion spectrum
title The WITCH experiment: Acquiring the first recoil ion spectrum
title_full The WITCH experiment: Acquiring the first recoil ion spectrum
title_fullStr The WITCH experiment: Acquiring the first recoil ion spectrum
title_full_unstemmed The WITCH experiment: Acquiring the first recoil ion spectrum
title_short The WITCH experiment: Acquiring the first recoil ion spectrum
title_sort witch experiment: acquiring the first recoil ion spectrum
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1016/j.nimb.2008.05.150
http://cds.cern.ch/record/1116712
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