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An algorithm for calculating the Lorentz angle in silicon detectors

Future experiments will use silicon sensors in the harsh radiation environment of the LHC (Large Hadron Collider) and high magnetic fields. The drift direction of the charge carriers is affected by the Lorentz force due to the high magnetic field. Also the resulting radiation damage changes the prop...

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Detalles Bibliográficos
Autores principales: Bartsch, V., de Boer, W., Bol, J., Dierlamm, A., Grigoriev, E., Hauler, F., Heising, S., Jungermann, L.
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0168-9002(02)01801-6
http://cds.cern.ch/record/549055
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author Bartsch, V.
de Boer, W.
Bol, J.
Dierlamm, A.
Grigoriev, E.
Hauler, F.
Heising, S.
Jungermann, L.
author_facet Bartsch, V.
de Boer, W.
Bol, J.
Dierlamm, A.
Grigoriev, E.
Hauler, F.
Heising, S.
Jungermann, L.
author_sort Bartsch, V.
collection CERN
description Future experiments will use silicon sensors in the harsh radiation environment of the LHC (Large Hadron Collider) and high magnetic fields. The drift direction of the charge carriers is affected by the Lorentz force due to the high magnetic field. Also the resulting radiation damage changes the properties of the drift. In this paper measurements of the Lorentz angle of electrons and holes before and after irradiation are reviewed and compared with a simple algorithm to compute the Lorentz angle.
id cern-549055
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5490552023-03-14T18:43:41Zdoi:10.1016/S0168-9002(02)01801-6http://cds.cern.ch/record/549055engBartsch, V.de Boer, W.Bol, J.Dierlamm, A.Grigoriev, E.Hauler, F.Heising, S.Jungermann, L.An algorithm for calculating the Lorentz angle in silicon detectorsDetectors and Experimental TechniquesFuture experiments will use silicon sensors in the harsh radiation environment of the LHC (Large Hadron Collider) and high magnetic fields. The drift direction of the charge carriers is affected by the Lorentz force due to the high magnetic field. Also the resulting radiation damage changes the properties of the drift. In this paper measurements of the Lorentz angle of electrons and holes before and after irradiation are reviewed and compared with a simple algorithm to compute the Lorentz angle.Future experiments will use silicon sensors in the harsh radiation environment of the LHC (Large Hadron Collider) and high magnetic fields. The drift direction of the charge carriers is affected by the Lorentz force due to the high magnetic field. Also the resulting radiation damage changes the properties of the drift. In this paper measurements of the Lorentz angle of electrons and holes before and after irradiation are reviewed and compared with a simple algorithm to compute the Lorentz angle.physics/0204078oai:cds.cern.ch:5490552002-04-26
spellingShingle Detectors and Experimental Techniques
Bartsch, V.
de Boer, W.
Bol, J.
Dierlamm, A.
Grigoriev, E.
Hauler, F.
Heising, S.
Jungermann, L.
An algorithm for calculating the Lorentz angle in silicon detectors
title An algorithm for calculating the Lorentz angle in silicon detectors
title_full An algorithm for calculating the Lorentz angle in silicon detectors
title_fullStr An algorithm for calculating the Lorentz angle in silicon detectors
title_full_unstemmed An algorithm for calculating the Lorentz angle in silicon detectors
title_short An algorithm for calculating the Lorentz angle in silicon detectors
title_sort algorithm for calculating the lorentz angle in silicon detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/S0168-9002(02)01801-6
http://cds.cern.ch/record/549055
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