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First test of cold edgeless silicon microstrip detectors

Silicon microstrip detectors will provide the forward tracking in the TOTEM experiment at the LHC. To allow efficient tracking closest to the beam ( approximately equals 1 mm) these detectors should be sensitive up to their physical edge (i.e. edgeless). Edgeless (without guard rings) microstrip pla...

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Detalles Bibliográficos
Autores principales: Avati, V, Boccone, V, Borer, K, Bozzo, M, Capra, R, Casagrande, L, Eggert, Karsten, Heijne, Erik H M, Klauke, S, Li, Z, Mäki, T, Morelli, A, Oljemark, F, Palmieri, V G, Perea-Solano, B, Tapprogge, Stefan
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2003.10.078
http://cds.cern.ch/record/802356
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author Avati, V
Boccone, V
Borer, K
Bozzo, M
Capra, R
Casagrande, L
Eggert, Karsten
Heijne, Erik H M
Klauke, S
Li, Z
Mäki, T
Morelli, A
Oljemark, F
Palmieri, V G
Perea-Solano, B
Tapprogge, Stefan
author_facet Avati, V
Boccone, V
Borer, K
Bozzo, M
Capra, R
Casagrande, L
Eggert, Karsten
Heijne, Erik H M
Klauke, S
Li, Z
Mäki, T
Morelli, A
Oljemark, F
Palmieri, V G
Perea-Solano, B
Tapprogge, Stefan
author_sort Avati, V
collection CERN
description Silicon microstrip detectors will provide the forward tracking in the TOTEM experiment at the LHC. To allow efficient tracking closest to the beam ( approximately equals 1 mm) these detectors should be sensitive up to their physical edge (i.e. edgeless). Edgeless (without guard rings) microstrip planar detectors can be operated at cryogenic temperatures (about 130 degree K) where leakage currents due to the active edge are drastically reduced. A silicon microstrip prototype, cut perpendicular to the strips, has been tested with a pion beam at CERN to study its efficiency close to the edge by using reference tracks from a simple silicon telescope. Results indicate that the detector measures tracks with good efficiency up to the physical edge of the silicon.
id cern-802356
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
record_format invenio
spelling cern-8023562019-09-30T06:29:59Zdoi:10.1016/j.nima.2003.10.078http://cds.cern.ch/record/802356engAvati, VBoccone, VBorer, KBozzo, MCapra, RCasagrande, LEggert, KarstenHeijne, Erik H MKlauke, SLi, ZMäki, TMorelli, AOljemark, FPalmieri, V GPerea-Solano, BTapprogge, StefanFirst test of cold edgeless silicon microstrip detectorsDetectors and Experimental TechniquesSilicon microstrip detectors will provide the forward tracking in the TOTEM experiment at the LHC. To allow efficient tracking closest to the beam ( approximately equals 1 mm) these detectors should be sensitive up to their physical edge (i.e. edgeless). Edgeless (without guard rings) microstrip planar detectors can be operated at cryogenic temperatures (about 130 degree K) where leakage currents due to the active edge are drastically reduced. A silicon microstrip prototype, cut perpendicular to the strips, has been tested with a pion beam at CERN to study its efficiency close to the edge by using reference tracks from a simple silicon telescope. Results indicate that the detector measures tracks with good efficiency up to the physical edge of the silicon.oai:cds.cern.ch:8023562004
spellingShingle Detectors and Experimental Techniques
Avati, V
Boccone, V
Borer, K
Bozzo, M
Capra, R
Casagrande, L
Eggert, Karsten
Heijne, Erik H M
Klauke, S
Li, Z
Mäki, T
Morelli, A
Oljemark, F
Palmieri, V G
Perea-Solano, B
Tapprogge, Stefan
First test of cold edgeless silicon microstrip detectors
title First test of cold edgeless silicon microstrip detectors
title_full First test of cold edgeless silicon microstrip detectors
title_fullStr First test of cold edgeless silicon microstrip detectors
title_full_unstemmed First test of cold edgeless silicon microstrip detectors
title_short First test of cold edgeless silicon microstrip detectors
title_sort first test of cold edgeless silicon microstrip detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2003.10.078
http://cds.cern.ch/record/802356
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