Cargando…
GEM detector performance with innovative micro-TPC readout in high magnetic field
Gas detector development is one of the pillars of the research in fundamental physics. Since several years, a new concept of detectors, called Micro Pattern Gas Detector (MPGD), allowed to overcome several problems related to other types of commonly used detectors, like drift chamber and micro strip...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Lenguaje: | eng |
Publicado: |
2018
|
Materias: | |
Acceso en línea: | https://dx.doi.org/10.1051/epjconf/201817001009 http://cds.cern.ch/record/2676698 |
_version_ | 1780962811217707008 |
---|---|
author | Garzia, I Alexeev, M Amoroso, A Baldini Ferroli, R Bertani, M Bettoni, D Bianchi, F Calcaterra, A Canale, N Capodiferro, M Cassariti, V Cerioni, S Chai, J Y Chiozzi, S Cibinetto, G Cossio, F Cotta Ramusino, A De Mori, F Destefanis, M Dong, J Evangelisti, F Farinelli, R Fava, L Felici, G Fioravanti, E Gatta, M Greco, M Lavezzi, L Leng, C Y Li, H Maggiora, M Malaguti, R Marcello, S Melchiorri, M Mezzadri, G Mignone, M Morello, G Pacetti, S Patteri, P Pellegrino, J Pelosi, A Rivetti, A Rolo, M D Savrié, M Scodeggio, M Soldani, E Sosio, S Spataro, S Tskhadadze, E Verma, S Wheadon, R Yan, L |
author_facet | Garzia, I Alexeev, M Amoroso, A Baldini Ferroli, R Bertani, M Bettoni, D Bianchi, F Calcaterra, A Canale, N Capodiferro, M Cassariti, V Cerioni, S Chai, J Y Chiozzi, S Cibinetto, G Cossio, F Cotta Ramusino, A De Mori, F Destefanis, M Dong, J Evangelisti, F Farinelli, R Fava, L Felici, G Fioravanti, E Gatta, M Greco, M Lavezzi, L Leng, C Y Li, H Maggiora, M Malaguti, R Marcello, S Melchiorri, M Mezzadri, G Mignone, M Morello, G Pacetti, S Patteri, P Pellegrino, J Pelosi, A Rivetti, A Rolo, M D Savrié, M Scodeggio, M Soldani, E Sosio, S Spataro, S Tskhadadze, E Verma, S Wheadon, R Yan, L |
author_sort | Garzia, I |
collection | CERN |
description | Gas detector development is one of the pillars of the research in fundamental physics. Since several years, a new concept of detectors, called Micro Pattern Gas Detector (MPGD), allowed to overcome several problems related to other types of commonly used detectors, like drift chamber and micro strips detectors, reducing the rate of discharges and providing better radiation tolerance. Among the most used MPGDs are the Gas Electron Multipliers (GEMs). Invented by Sauli in 1997, nowadays GEMs have become an important reality for particle detectors in high energy physics. Commonly deployed as fast timing detectors and triggers, their fast response, high rate capability and high radiation hardness make them also suitable as tracking detectors. The readout scheme is one of the most important features in tracking technology. Analog readout based on the calculation of the center of gravity technique allows to overcome the limit imposed by digital pads, whose spatial resolution is limited by the pitch dimensions. However, the presence of high external magnetic fields can distort the electronic cloud and affect the performance. The development of the micro-TPC reconstruction method brings GEM detectors into a new prospective, improving significantly the spatial resolution in presence of high magnetic fields. This innovative technique allows to reconstruct the 3-dimensional particle position, as Time Projection Chamber, but within a drift gap of a few millimeters. In these report, the charge centroid and micro-TPC methods are described in details. We discuss the results of several test beams performed with planar chambers in magnetic field. These results are one of the first developments of micro-TPC technique for GEM detectors, which allows to reach unprecedented performance in a high magnetic field of 1 T. |
id | oai-inspirehep.net-1648275 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2018 |
record_format | invenio |
spelling | oai-inspirehep.net-16482752019-09-30T06:29:59Zdoi:10.1051/epjconf/201817001009http://cds.cern.ch/record/2676698engGarzia, IAlexeev, MAmoroso, ABaldini Ferroli, RBertani, MBettoni, DBianchi, FCalcaterra, ACanale, NCapodiferro, MCassariti, VCerioni, SChai, J YChiozzi, SCibinetto, GCossio, FCotta Ramusino, ADe Mori, FDestefanis, MDong, JEvangelisti, FFarinelli, RFava, LFelici, GFioravanti, EGatta, MGreco, MLavezzi, LLeng, C YLi, HMaggiora, MMalaguti, RMarcello, SMelchiorri, MMezzadri, GMignone, MMorello, GPacetti, SPatteri, PPellegrino, JPelosi, ARivetti, ARolo, M DSavrié, MScodeggio, MSoldani, ESosio, SSpataro, STskhadadze, EVerma, SWheadon, RYan, LGEM detector performance with innovative micro-TPC readout in high magnetic fieldDetectors and Experimental TechniquesGas detector development is one of the pillars of the research in fundamental physics. Since several years, a new concept of detectors, called Micro Pattern Gas Detector (MPGD), allowed to overcome several problems related to other types of commonly used detectors, like drift chamber and micro strips detectors, reducing the rate of discharges and providing better radiation tolerance. Among the most used MPGDs are the Gas Electron Multipliers (GEMs). Invented by Sauli in 1997, nowadays GEMs have become an important reality for particle detectors in high energy physics. Commonly deployed as fast timing detectors and triggers, their fast response, high rate capability and high radiation hardness make them also suitable as tracking detectors. The readout scheme is one of the most important features in tracking technology. Analog readout based on the calculation of the center of gravity technique allows to overcome the limit imposed by digital pads, whose spatial resolution is limited by the pitch dimensions. However, the presence of high external magnetic fields can distort the electronic cloud and affect the performance. The development of the micro-TPC reconstruction method brings GEM detectors into a new prospective, improving significantly the spatial resolution in presence of high magnetic fields. This innovative technique allows to reconstruct the 3-dimensional particle position, as Time Projection Chamber, but within a drift gap of a few millimeters. In these report, the charge centroid and micro-TPC methods are described in details. We discuss the results of several test beams performed with planar chambers in magnetic field. These results are one of the first developments of micro-TPC technique for GEM detectors, which allows to reach unprecedented performance in a high magnetic field of 1 T.oai:inspirehep.net:16482752018 |
spellingShingle | Detectors and Experimental Techniques Garzia, I Alexeev, M Amoroso, A Baldini Ferroli, R Bertani, M Bettoni, D Bianchi, F Calcaterra, A Canale, N Capodiferro, M Cassariti, V Cerioni, S Chai, J Y Chiozzi, S Cibinetto, G Cossio, F Cotta Ramusino, A De Mori, F Destefanis, M Dong, J Evangelisti, F Farinelli, R Fava, L Felici, G Fioravanti, E Gatta, M Greco, M Lavezzi, L Leng, C Y Li, H Maggiora, M Malaguti, R Marcello, S Melchiorri, M Mezzadri, G Mignone, M Morello, G Pacetti, S Patteri, P Pellegrino, J Pelosi, A Rivetti, A Rolo, M D Savrié, M Scodeggio, M Soldani, E Sosio, S Spataro, S Tskhadadze, E Verma, S Wheadon, R Yan, L GEM detector performance with innovative micro-TPC readout in high magnetic field |
title | GEM detector performance with innovative micro-TPC readout in high magnetic field |
title_full | GEM detector performance with innovative micro-TPC readout in high magnetic field |
title_fullStr | GEM detector performance with innovative micro-TPC readout in high magnetic field |
title_full_unstemmed | GEM detector performance with innovative micro-TPC readout in high magnetic field |
title_short | GEM detector performance with innovative micro-TPC readout in high magnetic field |
title_sort | gem detector performance with innovative micro-tpc readout in high magnetic field |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1051/epjconf/201817001009 http://cds.cern.ch/record/2676698 |
work_keys_str_mv | AT garziai gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT alexeevm gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT amorosoa gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT baldiniferrolir gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT bertanim gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT bettonid gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT bianchif gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT calcaterraa gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT canalen gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT capodiferrom gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT cassaritiv gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT cerionis gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT chaijy gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT chiozzis gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT cibinettog gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT cossiof gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT cottaramusinoa gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT demorif gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT destefanism gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT dongj gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT evangelistif gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT farinellir gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT faval gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT felicig gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT fioravantie gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT gattam gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT grecom gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT lavezzil gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT lengcy gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT lih gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT maggioram gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT malagutir gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT marcellos gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT melchiorrim gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT mezzadrig gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT mignonem gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT morellog gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT pacettis gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT patterip gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT pellegrinoj gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT pelosia gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT rivettia gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT rolomd gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT savriem gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT scodeggiom gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT soldanie gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT sosios gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT spataros gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT tskhadadzee gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT vermas gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT wheadonr gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield AT yanl gemdetectorperformancewithinnovativemicrotpcreadoutinhighmagneticfield |