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First investigation of a novel 2D position-sensitive

This paper presents a first study of the performance of a novel 2D position-sensitive microstrip detector, where the resistive charge division method was implemented by replacing the metallic electrodes with resistive electrodes made of polycrystalline silicon. A characterization of two proof-of-con...

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Detalles Bibliográficos
Autores principales: Bassignana, D, Fernandez, M, Jaramillo, R, Lozano, M, Munoz, F J, Pellegrini, G, Quirion, D, Vila, I
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: JINST 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1694311
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author Bassignana, D
Fernandez, M
Jaramillo, R
Lozano, M
Munoz, F J
Pellegrini, G
Quirion, D
Vila, I
author_facet Bassignana, D
Fernandez, M
Jaramillo, R
Lozano, M
Munoz, F J
Pellegrini, G
Quirion, D
Vila, I
author_sort Bassignana, D
collection CERN
description This paper presents a first study of the performance of a novel 2D position-sensitive microstrip detector, where the resistive charge division method was implemented by replacing the metallic electrodes with resistive electrodes made of polycrystalline silicon. A characterization of two proof-of-concept prototypes with different values of the electrode resistivity was carried out using a pulsed Near Infra-Red laser. The experimental data were compared with the electrical simulation of the sensor equivalent circuit coupled to simple electronics readout circuits. The good agreement between experimental and simulation results establishes the soundness of resistive charge division method in silicon microstrip sensors and validates the developed simulation as a tool for the optimization of future sensor prototypes. Spatial resolution in the strip length direction depends on the ionizing event position. The average value obtained from the protype analysis is close to 1.2% of the strip length for a 6 MIP signal.
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spelling cern-16943112019-09-30T06:29:59Z http://cds.cern.ch/record/1694311 eng Bassignana, D Fernandez, M Jaramillo, R Lozano, M Munoz, F J Pellegrini, G Quirion, D Vila, I First investigation of a novel 2D position-sensitive Detectors and Experimental Techniques 9: Advanced infrastructures for detector R&D 9.4: Silicon Tracking Devices This paper presents a first study of the performance of a novel 2D position-sensitive microstrip detector, where the resistive charge division method was implemented by replacing the metallic electrodes with resistive electrodes made of polycrystalline silicon. A characterization of two proof-of-concept prototypes with different values of the electrode resistivity was carried out using a pulsed Near Infra-Red laser. The experimental data were compared with the electrical simulation of the sensor equivalent circuit coupled to simple electronics readout circuits. The good agreement between experimental and simulation results establishes the soundness of resistive charge division method in silicon microstrip sensors and validates the developed simulation as a tool for the optimization of future sensor prototypes. Spatial resolution in the strip length direction depends on the ionizing event position. The average value obtained from the protype analysis is close to 1.2% of the strip length for a 6 MIP signal. info:eu-repo/grantAgreement/EC/FP7/262025 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1694311 JINST JINST, (2012) pp. P02005 2012
spellingShingle Detectors and Experimental Techniques
9: Advanced infrastructures for detector R&D
9.4: Silicon Tracking Devices
Bassignana, D
Fernandez, M
Jaramillo, R
Lozano, M
Munoz, F J
Pellegrini, G
Quirion, D
Vila, I
First investigation of a novel 2D position-sensitive
title First investigation of a novel 2D position-sensitive
title_full First investigation of a novel 2D position-sensitive
title_fullStr First investigation of a novel 2D position-sensitive
title_full_unstemmed First investigation of a novel 2D position-sensitive
title_short First investigation of a novel 2D position-sensitive
title_sort first investigation of a novel 2d position-sensitive
topic Detectors and Experimental Techniques
9: Advanced infrastructures for detector R&D
9.4: Silicon Tracking Devices
url http://cds.cern.ch/record/1694311
http://cds.cern.ch/record/1694311
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