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In-Beam Test of Double-Sided Silicon Strip Detector
The response of a double-sided silicon strip detector to a 3 GeV pion beam from the Proton Synchrotron at CERN is presented. Charge matching between the pulseheights from both sides, produced by the same traversing particle, is obtained with a resolution better than 5%. The spatial resolution is mea...
Autores principales: | , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2000
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/689219 |
_version_ | 1780901864963833856 |
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author | Baudot, J Coffin, J P Guillaume, G Higueret, S Fintz, P Jundt, F Kuhn, C Lutz, Jean Robert Pagès, P Pozdniakov, S Rami, F Bouvier, S Erazmus, B Giliberto, S Martin, L Le Moal, C Roy, C Colledani, C Dulinski, W Turchetta, R Arnold, L |
author_facet | Baudot, J Coffin, J P Guillaume, G Higueret, S Fintz, P Jundt, F Kuhn, C Lutz, Jean Robert Pagès, P Pozdniakov, S Rami, F Bouvier, S Erazmus, B Giliberto, S Martin, L Le Moal, C Roy, C Colledani, C Dulinski, W Turchetta, R Arnold, L |
author_sort | Baudot, J |
collection | CERN |
description | The response of a double-sided silicon strip detector to a 3 GeV pion beam from the Proton Synchrotron at CERN is presented. Charge matching between the pulseheights from both sides, produced by the same traversing particle, is obtained with a resolution better than 5%. The spatial resolution is measured as a function of the incident angle of the projectile varying from 15µm at normal incidence to 32µm at 45°. The contribution of multiple scattering to the spatial resolution is estimated to 11µm. <P> List of Figures <BR> <UL> <LI>Figure 1:<A HREF="setup_bw.eps">The detector telescope used in the pion beam tests. </A> <LI>Figure 2:<A HREF="charge_m.eps">Distribution of the cluster pulseheights measured on the p-side versus the ones on the n-side for the same transversing particles. </A> <LI>Figure 3:<A HREF="ch_m_noise.eps">Noise distributions for clusteres of (a)p-side and (b)n-side of the tested double-side silicon strip detector. </A> <LI> Figure 4:<A HREF="ch_m_error2.eps">Distribution of deviations of the pulseheight values from the line. </A> <LI> Figure 5:<A HREF="res_ref.eps">Residual distribution of the reference detector 4X. </A> <LI>Figure 6:<A HREF="pul_height.eps">Cluster pulseheight of p-side of the tested DS silicon strip detector for tracks with normal incidence. </A> <LI>Figure 7:<A HREF="angle.eps">Correlation between the mean cluster pulseheight (points and squares) and the track length in the silicon which is proportional to 1/<I>cosØ</I>. </A> <LI> Figure 8:<A HREF="res_test.eps">Residual distributions of p-side of the tested DS silicon strip detector for (a)normal (0°) and (b)45° inclined tracks. </A> <LI> Figure 9:<A HREF="simu_m_sc.eps">Simulated distribution of a 3 GeV pion beam divergence in the used test setup. </A> </UL> |
id | cern-689219 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2000 |
record_format | invenio |
spelling | cern-6892192019-09-30T06:29:59Zhttp://cds.cern.ch/record/689219engBaudot, JCoffin, J PGuillaume, GHigueret, SFintz, PJundt, FKuhn, CLutz, Jean RobertPagès, PPozdniakov, SRami, FBouvier, SErazmus, BGiliberto, SMartin, LLe Moal, CRoy, CColledani, CDulinski, WTurchetta, RArnold, LIn-Beam Test of Double-Sided Silicon Strip DetectorDetectors and Experimental TechniquesThe response of a double-sided silicon strip detector to a 3 GeV pion beam from the Proton Synchrotron at CERN is presented. Charge matching between the pulseheights from both sides, produced by the same traversing particle, is obtained with a resolution better than 5%. The spatial resolution is measured as a function of the incident angle of the projectile varying from 15µm at normal incidence to 32µm at 45°. The contribution of multiple scattering to the spatial resolution is estimated to 11µm. <P> List of Figures <BR> <UL> <LI>Figure 1:<A HREF="setup_bw.eps">The detector telescope used in the pion beam tests. </A> <LI>Figure 2:<A HREF="charge_m.eps">Distribution of the cluster pulseheights measured on the p-side versus the ones on the n-side for the same transversing particles. </A> <LI>Figure 3:<A HREF="ch_m_noise.eps">Noise distributions for clusteres of (a)p-side and (b)n-side of the tested double-side silicon strip detector. </A> <LI> Figure 4:<A HREF="ch_m_error2.eps">Distribution of deviations of the pulseheight values from the line. </A> <LI> Figure 5:<A HREF="res_ref.eps">Residual distribution of the reference detector 4X. </A> <LI>Figure 6:<A HREF="pul_height.eps">Cluster pulseheight of p-side of the tested DS silicon strip detector for tracks with normal incidence. </A> <LI>Figure 7:<A HREF="angle.eps">Correlation between the mean cluster pulseheight (points and squares) and the track length in the silicon which is proportional to 1/<I>cosØ</I>. </A> <LI> Figure 8:<A HREF="res_test.eps">Residual distributions of p-side of the tested DS silicon strip detector for (a)normal (0°) and (b)45° inclined tracks. </A> <LI> Figure 9:<A HREF="simu_m_sc.eps">Simulated distribution of a 3 GeV pion beam divergence in the used test setup. </A> </UL>ALICE-INT-1998-05CERN-ALICE-INT-1998-05oai:cds.cern.ch:6892192000 |
spellingShingle | Detectors and Experimental Techniques Baudot, J Coffin, J P Guillaume, G Higueret, S Fintz, P Jundt, F Kuhn, C Lutz, Jean Robert Pagès, P Pozdniakov, S Rami, F Bouvier, S Erazmus, B Giliberto, S Martin, L Le Moal, C Roy, C Colledani, C Dulinski, W Turchetta, R Arnold, L In-Beam Test of Double-Sided Silicon Strip Detector |
title | In-Beam Test of Double-Sided Silicon Strip Detector |
title_full | In-Beam Test of Double-Sided Silicon Strip Detector |
title_fullStr | In-Beam Test of Double-Sided Silicon Strip Detector |
title_full_unstemmed | In-Beam Test of Double-Sided Silicon Strip Detector |
title_short | In-Beam Test of Double-Sided Silicon Strip Detector |
title_sort | in-beam test of double-sided silicon strip detector |
topic | Detectors and Experimental Techniques |
url | http://cds.cern.ch/record/689219 |
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