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The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD

In this work we present a novel idea for a compact spark-protected single amplification stage Micro-Pattern Gas Detector (MPGD). The detector amplification stage, realized with a structure very similar to a GEM foil, is embedded through a resistive layer in the readout board. A cathode electrode, de...

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Autores principales: Bencivenni, G., De Oliveira, R., Morello, G., Lener, M. Poli
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: JINST 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/10/02/P02008
http://cds.cern.ch/record/2238861
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author Bencivenni, G.
De Oliveira, R.
Morello, G.
Lener, M. Poli
author_facet Bencivenni, G.
De Oliveira, R.
Morello, G.
Lener, M. Poli
author_sort Bencivenni, G.
collection CERN
description In this work we present a novel idea for a compact spark-protected single amplification stage Micro-Pattern Gas Detector (MPGD). The detector amplification stage, realized with a structure very similar to a GEM foil, is embedded through a resistive layer in the readout board. A cathode electrode, defining the gas conversion/drift gap, completes the detector mechanics. The new structure, that we call micro-Resistive WELL (-RWELL), has some characteristics in common with previous MPGDs, such as C.A.T. and WELL, developed more than ten years ago. The prototype object of the present study has been realized in the 2009 by TE-MPE-EM Workshop at CERN. The new architecture is a very compact MPGD, robust against discharges and exhibiting a large gain ( 6103), simple to construct and easy for engineering and then suitable for large area tracking devices as well as huge calorimetric apparata.
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spelling cern-22388612022-08-10T12:51:42Z doi:10.1088/1748-0221/10/02/P02008 http://cds.cern.ch/record/2238861 eng Bencivenni, G. De Oliveira, R. Morello, G. Lener, M. Poli The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD Detectors and Experimental Techniques 13: Innovative gas detectors In this work we present a novel idea for a compact spark-protected single amplification stage Micro-Pattern Gas Detector (MPGD). The detector amplification stage, realized with a structure very similar to a GEM foil, is embedded through a resistive layer in the readout board. A cathode electrode, defining the gas conversion/drift gap, completes the detector mechanics. The new structure, that we call micro-Resistive WELL (-RWELL), has some characteristics in common with previous MPGDs, such as C.A.T. and WELL, developed more than ten years ago. The prototype object of the present study has been realized in the 2009 by TE-MPE-EM Workshop at CERN. The new architecture is a very compact MPGD, robust against discharges and exhibiting a large gain ( 6103), simple to construct and easy for engineering and then suitable for large area tracking devices as well as huge calorimetric apparata. In this work we present a novel idea for a compact spark-protected single amplification stage Micro-Pattern Gas Detector (MPGD). The detector amplification stage, realized with a structure very similar to a GEM foil, is embedded through a resistive layer in the readout board. A cathode electrode, defining the gas conversion/drift gap, completes the detector mechanics. The new structure, that we call Resistive-WELL (R-WELL), has some characteristics in common with previous MPGDs, such as C.A.T. and WELL, developed more than ten years ago. The prototype object of the present study has been realized in the 2009 by TE-MPE-EM Workshop at CERN. The new architecture is a very compact MPGD, robust against discharges and exhibiting a large gain ($\sim$6$\times$10$^3$), simple to construct and easy for engineering and then suitable for large area tracking devices as well as huge calorimetric apparata. In this work we present a novel idea for a compact spark-protected single amplification stage Micro-Pattern Gas Detector (MPGD). The detector amplification stage, realized with a structure very similar to a GEM foil, is embedded through a resistive layer in the readout board. A cathode electrode, defining the gas conversion/drift gap, completes the detector mechanics. The new structure, that we call micro-Resistive WELL (μ-RWELL), has some characteristics in common with previous MPGDs, such as C.A.T. and WELL, developed more than ten years ago. The prototype object of the present study has been realized in the 2009 by TE-MPE-EM Workshop at CERN. The new architecture is a very compact MPGD, robust against discharges and exhibiting a large gain (~ 6 × 10(3)), simple to construct and easy for engineering and then suitable for large area tracking devices as well as huge calorimetric apparata. info:eu-repo/grantAgreement/EC/FP7/654168 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2238861 JINST JINST, (2015) pp. P02008 2015-02-18
spellingShingle Detectors and Experimental Techniques
13: Innovative gas detectors
Bencivenni, G.
De Oliveira, R.
Morello, G.
Lener, M. Poli
The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD
title The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD
title_full The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD
title_fullStr The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD
title_full_unstemmed The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD
title_short The micro-Resistive WELL detector: a compact spark-protected single amplification-stage MPGD
title_sort micro-resistive well detector: a compact spark-protected single amplification-stage mpgd
topic Detectors and Experimental Techniques
13: Innovative gas detectors
url https://dx.doi.org/10.1088/1748-0221/10/02/P02008
http://cds.cern.ch/record/2238861
http://cds.cern.ch/record/2238861
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