A new method for pulse analysis of driftless-gas proportional scintillation counters

Bibliographic Details
Main Author: Simões, P. C. P. S.
Publication Date: 2003
Other Authors: Covita, D. S., Veloso, J. F. C. A., Santos, J. M. F. dos, Morgado, R. E.
Format: Article
Language: eng
Source: Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)
Download full: https://hdl.handle.net/10316/4474
https://doi.org/10.1016/S0168-9002(03)01062-3
Summary: A new method for pulse analysis of driftless-gas proportional scintillation counters (GPSCs) is presented. With this method the requirement for additional analog or digital signal time-analysis and pulse-amplitude correction currently used is eliminated. In contrast to conventional- and driftless-GPSCs that have always relied on long shaping-time constants (several [mu]s), the use of very short linear amplifier shaping-time constants (~50 ns) enables pulse shapes to closely represent the scintillation light-pulse time-profile. Since the number of detected photons in the photosensor increases continuously with depth due to the increase in the solid angle subtended by the photosensor, a maximum is achieved when the primary electron cloud is closest to the anode. This maximum depends only on the number of primary electrons in that cloud, regardless of where the X-ray absorption took place, and is proportional to the X-ray energy.
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spelling A new method for pulse analysis of driftless-gas proportional scintillation countersXenon gaseous detectorsGas proportional scintillation countersDriftlessPulse analysisA new method for pulse analysis of driftless-gas proportional scintillation counters (GPSCs) is presented. With this method the requirement for additional analog or digital signal time-analysis and pulse-amplitude correction currently used is eliminated. In contrast to conventional- and driftless-GPSCs that have always relied on long shaping-time constants (several [mu]s), the use of very short linear amplifier shaping-time constants (~50 ns) enables pulse shapes to closely represent the scintillation light-pulse time-profile. Since the number of detected photons in the photosensor increases continuously with depth due to the increase in the solid angle subtended by the photosensor, a maximum is achieved when the primary electron cloud is closest to the anode. This maximum depends only on the number of primary electrons in that cloud, regardless of where the X-ray absorption took place, and is proportional to the X-ray energy.http://www.sciencedirect.com/science/article/B6TJM-486BN6Y-1C/1/d4c285545f4a2f1fb3da56268ff8df9f2003info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleaplication/PDFhttps://hdl.handle.net/10316/4474https://hdl.handle.net/10316/4474https://doi.org/10.1016/S0168-9002(03)01062-3engNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 505:1-2 (2003) 247-251Simões, P. C. P. S.Covita, D. S.Veloso, J. F. C. A.Santos, J. M. F. dosMorgado, R. E.info:eu-repo/semantics/openAccessreponame:Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)instname:FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiainstacron:RCAAP2022-05-25T03:17:01Zoai:estudogeral.uc.pt:10316/4474Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireinfo@rcaap.ptopendoar:https://opendoar.ac.uk/repository/71602025-05-29T05:21:52.149294Repositórios Científicos de Acesso Aberto de Portugal (RCAAP) - FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiafalse
dc.title.none.fl_str_mv A new method for pulse analysis of driftless-gas proportional scintillation counters
title A new method for pulse analysis of driftless-gas proportional scintillation counters
spellingShingle A new method for pulse analysis of driftless-gas proportional scintillation counters
Simões, P. C. P. S.
Xenon gaseous detectors
Gas proportional scintillation counters
Driftless
Pulse analysis
title_short A new method for pulse analysis of driftless-gas proportional scintillation counters
title_full A new method for pulse analysis of driftless-gas proportional scintillation counters
title_fullStr A new method for pulse analysis of driftless-gas proportional scintillation counters
title_full_unstemmed A new method for pulse analysis of driftless-gas proportional scintillation counters
title_sort A new method for pulse analysis of driftless-gas proportional scintillation counters
author Simões, P. C. P. S.
author_facet Simões, P. C. P. S.
Covita, D. S.
Veloso, J. F. C. A.
Santos, J. M. F. dos
Morgado, R. E.
author_role author
author2 Covita, D. S.
Veloso, J. F. C. A.
Santos, J. M. F. dos
Morgado, R. E.
author2_role author
author
author
author
dc.contributor.author.fl_str_mv Simões, P. C. P. S.
Covita, D. S.
Veloso, J. F. C. A.
Santos, J. M. F. dos
Morgado, R. E.
dc.subject.por.fl_str_mv Xenon gaseous detectors
Gas proportional scintillation counters
Driftless
Pulse analysis
topic Xenon gaseous detectors
Gas proportional scintillation counters
Driftless
Pulse analysis
description A new method for pulse analysis of driftless-gas proportional scintillation counters (GPSCs) is presented. With this method the requirement for additional analog or digital signal time-analysis and pulse-amplitude correction currently used is eliminated. In contrast to conventional- and driftless-GPSCs that have always relied on long shaping-time constants (several [mu]s), the use of very short linear amplifier shaping-time constants (~50 ns) enables pulse shapes to closely represent the scintillation light-pulse time-profile. Since the number of detected photons in the photosensor increases continuously with depth due to the increase in the solid angle subtended by the photosensor, a maximum is achieved when the primary electron cloud is closest to the anode. This maximum depends only on the number of primary electrons in that cloud, regardless of where the X-ray absorption took place, and is proportional to the X-ray energy.
publishDate 2003
dc.date.none.fl_str_mv 2003
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
format article
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dc.identifier.uri.fl_str_mv https://hdl.handle.net/10316/4474
https://hdl.handle.net/10316/4474
https://doi.org/10.1016/S0168-9002(03)01062-3
url https://hdl.handle.net/10316/4474
https://doi.org/10.1016/S0168-9002(03)01062-3
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 505:1-2 (2003) 247-251
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
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