Cargando…

Advances on micro-RWELL gaseous detector

The R&D; on the micro-Resistive-WELL ($\mu$-RWELL) detector technology aims in developing a new scalable, compact, spark-protected, single amplification stage Micro-Pattern Gas Detectors (MPGD) for large area HEP applications as tracking and calorimeter device as well as for industrial and medic...

Descripción completa

Detalles Bibliográficos
Autores principales: Morello, Gianfranco, Bencivenni, G, Benussi, L, De Simone, P, Felici, G, Gatta, M, Poli Lener, M, De Oliveira, R, Ochi, A, Borgonovi, L, Giacomelli, P, Ranieri, A, Valentino, V, Ressegotti, M, Vai, I
Lenguaje:eng
Publicado: SISSA 2017
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.302.0002
http://cds.cern.ch/record/2314956
_version_ 1780958189994377216
author Morello, Gianfranco
Bencivenni, G
Benussi, L
De Simone, P
Felici, G
Gatta, M
Poli Lener, M
De Oliveira, R
Ochi, A
Borgonovi, L
Giacomelli, P
Ranieri, A
Valentino, V
Ressegotti, M
Vai, I
author_facet Morello, Gianfranco
Bencivenni, G
Benussi, L
De Simone, P
Felici, G
Gatta, M
Poli Lener, M
De Oliveira, R
Ochi, A
Borgonovi, L
Giacomelli, P
Ranieri, A
Valentino, V
Ressegotti, M
Vai, I
author_sort Morello, Gianfranco
collection CERN
description The R&D; on the micro-Resistive-WELL ($\mu$-RWELL) detector technology aims in developing a new scalable, compact, spark-protected, single amplification stage Micro-Pattern Gas Detectors (MPGD) for large area HEP applications as tracking and calorimeter device as well as for industrial and medical applications as X-ray and neutron imaging gas pixel detector. The novel micro- structure, exploiting several solutions and improvements achieved in the last years for MPGDs, in particular for GEMs and Micromegas, is an extremely simple detector allowing an easy engineering with consequent technological transfer toward the photolithography industry. Large area detectors (up $1 \times 2 m^2$) can be realized splicing $\mu$-RWELL_PCB tiles of smaller size (about $0.5 \times 1 m^2$ - typical PCB industrial size). The detector, composed by few basic elements such as the readout-PCB embedded with the amplification stage (through the resistive layer) and the cathode defining the gas drift-conversion gap has been largely characterized on test bench with X-ray and with beam test.
id oai-inspirehep.net-1645807
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
publisher SISSA
record_format invenio
spelling oai-inspirehep.net-16458072019-10-15T15:23:21Zdoi:10.22323/1.302.0002http://cds.cern.ch/record/2314956engMorello, GianfrancoBencivenni, GBenussi, LDe Simone, PFelici, GGatta, MPoli Lener, MDe Oliveira, ROchi, ABorgonovi, LGiacomelli, PRanieri, AValentino, VRessegotti, MVai, IAdvances on micro-RWELL gaseous detectorDetectors and Experimental TechniquesThe R&D; on the micro-Resistive-WELL ($\mu$-RWELL) detector technology aims in developing a new scalable, compact, spark-protected, single amplification stage Micro-Pattern Gas Detectors (MPGD) for large area HEP applications as tracking and calorimeter device as well as for industrial and medical applications as X-ray and neutron imaging gas pixel detector. The novel micro- structure, exploiting several solutions and improvements achieved in the last years for MPGDs, in particular for GEMs and Micromegas, is an extremely simple detector allowing an easy engineering with consequent technological transfer toward the photolithography industry. Large area detectors (up $1 \times 2 m^2$) can be realized splicing $\mu$-RWELL_PCB tiles of smaller size (about $0.5 \times 1 m^2$ - typical PCB industrial size). The detector, composed by few basic elements such as the readout-PCB embedded with the amplification stage (through the resistive layer) and the cathode defining the gas drift-conversion gap has been largely characterized on test bench with X-ray and with beam test.SISSAoai:inspirehep.net:16458072017
spellingShingle Detectors and Experimental Techniques
Morello, Gianfranco
Bencivenni, G
Benussi, L
De Simone, P
Felici, G
Gatta, M
Poli Lener, M
De Oliveira, R
Ochi, A
Borgonovi, L
Giacomelli, P
Ranieri, A
Valentino, V
Ressegotti, M
Vai, I
Advances on micro-RWELL gaseous detector
title Advances on micro-RWELL gaseous detector
title_full Advances on micro-RWELL gaseous detector
title_fullStr Advances on micro-RWELL gaseous detector
title_full_unstemmed Advances on micro-RWELL gaseous detector
title_short Advances on micro-RWELL gaseous detector
title_sort advances on micro-rwell gaseous detector
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.22323/1.302.0002
http://cds.cern.ch/record/2314956
work_keys_str_mv AT morellogianfranco advancesonmicrorwellgaseousdetector
AT bencivennig advancesonmicrorwellgaseousdetector
AT benussil advancesonmicrorwellgaseousdetector
AT desimonep advancesonmicrorwellgaseousdetector
AT felicig advancesonmicrorwellgaseousdetector
AT gattam advancesonmicrorwellgaseousdetector
AT polilenerm advancesonmicrorwellgaseousdetector
AT deoliveirar advancesonmicrorwellgaseousdetector
AT ochia advancesonmicrorwellgaseousdetector
AT borgonovil advancesonmicrorwellgaseousdetector
AT giacomellip advancesonmicrorwellgaseousdetector
AT ranieria advancesonmicrorwellgaseousdetector
AT valentinov advancesonmicrorwellgaseousdetector
AT ressegottim advancesonmicrorwellgaseousdetector
AT vaii advancesonmicrorwellgaseousdetector