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In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detector
In-beam evaluation of a fully-equipped medium-size 30$\times$30 cm$^2$ Resistive Plate WELL (RPWELL) detector is presented. It consists here of a single element gas-avalanche multiplier with Semitron ESD225 resistive plate, 1 cm$^2$ readout pads and APV25/SRS electronics. Similarly to previous resul...
Autores principales: | , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2016
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1748-0221/11/09/P09013 http://cds.cern.ch/record/2198446 |
_version_ | 1780951217715806208 |
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author | Moleri, L. Amaro, F.D. Arazi, L. Azevedo, C.D.R. Breskin, A. Coimbra, A.E.C. Oliveri, E. Pereira, F.A. Renous, D. Shaked Schaarschmidt, J. dos Santos, J. M. F. Veloso, J.F.C.A. Bressler, S. |
author_facet | Moleri, L. Amaro, F.D. Arazi, L. Azevedo, C.D.R. Breskin, A. Coimbra, A.E.C. Oliveri, E. Pereira, F.A. Renous, D. Shaked Schaarschmidt, J. dos Santos, J. M. F. Veloso, J.F.C.A. Bressler, S. |
author_sort | Moleri, L. |
collection | CERN |
description | In-beam evaluation of a fully-equipped medium-size 30$\times$30 cm$^2$ Resistive Plate WELL (RPWELL) detector is presented. It consists here of a single element gas-avalanche multiplier with Semitron ESD225 resistive plate, 1 cm$^2$ readout pads and APV25/SRS electronics. Similarly to previous results with small detector prototypes, stable operation at high detection efficiency (>98%) and low average pad multiplicity (~1.2) were recorded with 150 GeV muon and high-rate pion beams, in Ne/(5%CH$_4$), Ar/(5%CH$_4$) and Ar/(7%CO$_2$). This is an important step towards the realization of robust detectors suitable for applications requiring large-area coverage; among them Digital Hadron Calorimetry. |
id | cern-2198446 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2016 |
record_format | invenio |
spelling | cern-21984462022-08-10T12:47:42Zdoi:10.1088/1748-0221/11/09/P09013http://cds.cern.ch/record/2198446engMoleri, L.Amaro, F.D.Arazi, L.Azevedo, C.D.R.Breskin, A.Coimbra, A.E.C.Oliveri, E.Pereira, F.A.Renous, D. ShakedSchaarschmidt, J.dos Santos, J. M. F.Veloso, J.F.C.A.Bressler, S.In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detectorDetectors and Experimental TechniquesIn-beam evaluation of a fully-equipped medium-size 30$\times$30 cm$^2$ Resistive Plate WELL (RPWELL) detector is presented. It consists here of a single element gas-avalanche multiplier with Semitron ESD225 resistive plate, 1 cm$^2$ readout pads and APV25/SRS electronics. Similarly to previous results with small detector prototypes, stable operation at high detection efficiency (>98%) and low average pad multiplicity (~1.2) were recorded with 150 GeV muon and high-rate pion beams, in Ne/(5%CH$_4$), Ar/(5%CH$_4$) and Ar/(7%CO$_2$). This is an important step towards the realization of robust detectors suitable for applications requiring large-area coverage; among them Digital Hadron Calorimetry.In-beam evaluation of a fully-equipped medium-size 30 × 30 cm(2) Resistive Plate WELL (RPWELL) detector is presented. It consists here of a single element gas-avalanche multiplier with Semitron ESD225 resistive plate, 1 cm(2) readout pads and APV25/SRS electronics. Similarly to previous results with small detector prototypes, stable operation at high detection efficiency (> 98%) and low average pad multiplicity (~ 1.2) were recorded with 150 GeV muon and high-rate pion beams, in Ne/(5%CH(4)), Ar/(5%CH(4)) and Ar/(7%CO(2)). This is an important step towards the realization of robust detectors suitable for applications requiring large-area coverage, among them Digital Hadron Calorimetry.In-beam evaluation of a fully-equipped medium-size 30$\times$30 cm$^2$ Resistive Plate WELL (RPWELL) detector is presented. It consists here of a single element gas-avalanche multiplier with Semitron ESD225 resistive plate, 1 cm$^2$ readout pads and APV25/SRS electronics. Similarly to previous results with small detector prototypes, stable operation at high detection efficiency (>98%) and low average pad multiplicity (~1.2) were recorded with 150 GeV muon and high-rate pion beams, in Ne/(5%CH$_4$), Ar/(5%CH$_4$) and Ar/(7%CO$_2$). This is an important step towards the realization of robust detectors suitable for applications requiring large-area coverage; among them Digital Hadron Calorimetry.arXiv:1607.02587oai:cds.cern.ch:21984462016-07-09 |
spellingShingle | Detectors and Experimental Techniques Moleri, L. Amaro, F.D. Arazi, L. Azevedo, C.D.R. Breskin, A. Coimbra, A.E.C. Oliveri, E. Pereira, F.A. Renous, D. Shaked Schaarschmidt, J. dos Santos, J. M. F. Veloso, J.F.C.A. Bressler, S. In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detector |
title | In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detector |
title_full | In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detector |
title_fullStr | In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detector |
title_full_unstemmed | In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detector |
title_short | In-beam evaluation of a medium-size Resistive-Plate WELL gaseous particle detector |
title_sort | in-beam evaluation of a medium-size resistive-plate well gaseous particle detector |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1088/1748-0221/11/09/P09013 http://cds.cern.ch/record/2198446 |
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