Cargando…

Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb

We report on the ongoing work towards a hybrid photon detector with integrated Si pixel readout for the ring imaging Cherenkov detectors of the LHCb experiment at the Large Hadron Collider at CERN. The photon detector is based on an electrostatically focussed image intensifier tube geometry where th...

Descripción completa

Detalles Bibliográficos
Autores principales: Albrecht, E, Alemi, M, Barber, G J, Bibby, J H, Campbell, M, Duane, A, Gys, Thierry, Montenegro, J, Piedigrossi, D, Schomaker, R, Snoeys, W, Wotton, S A, Wyllie, Ken H
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0168-9002(99)01216-4
http://cds.cern.ch/record/437497
_version_ 1780895479666573312
author Albrecht, E
Alemi, M
Barber, G J
Bibby, J H
Campbell, M
Duane, A
Gys, Thierry
Montenegro, J
Piedigrossi, D
Schomaker, R
Snoeys, W
Wotton, S A
Wyllie, Ken H
author_facet Albrecht, E
Alemi, M
Barber, G J
Bibby, J H
Campbell, M
Duane, A
Gys, Thierry
Montenegro, J
Piedigrossi, D
Schomaker, R
Snoeys, W
Wotton, S A
Wyllie, Ken H
author_sort Albrecht, E
collection CERN
description We report on the ongoing work towards a hybrid photon detector with integrated Si pixel readout for the ring imaging Cherenkov detectors of the LHCb experiment at the Large Hadron Collider at CERN. The photon detector is based on an electrostatically focussed image intensifier tube geometry where the image is de-magnified by a factor of ~5. The anode consists of a silicon pixel array, bump-bonded to a binary readout chip with matching pixel electronics. The performance of full-scale prototypes equipped with 61-pixel anodes and external analogue readout is presented. The average signal-to-noise ratio is ~11 with a peaking time of 1.2 mu s. The tube active-to-total surface ratio is 81.7%, which meets the LHCb requirements. The spatial precision is measured to be better than 90 mu m. A cluster of three such tubes has been installed in the LHCb RICH 1 prototype where Cherenkov gas rings have been successfully detected. Progress towards the encapsulation of new pixel electronics into a tube is also reported. In particular, the status of the development of a binary readout chip with a peaking time of 25 ns and a low and uniform detection threshold is summarized. (11 refs).
id cern-437497
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4374972019-09-30T06:29:59Zdoi:10.1016/S0168-9002(99)01216-4http://cds.cern.ch/record/437497engAlbrecht, EAlemi, MBarber, G JBibby, J HCampbell, MDuane, AGys, ThierryMontenegro, JPiedigrossi, DSchomaker, RSnoeys, WWotton, S AWyllie, Ken HPerformance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCbDetectors and Experimental TechniquesWe report on the ongoing work towards a hybrid photon detector with integrated Si pixel readout for the ring imaging Cherenkov detectors of the LHCb experiment at the Large Hadron Collider at CERN. The photon detector is based on an electrostatically focussed image intensifier tube geometry where the image is de-magnified by a factor of ~5. The anode consists of a silicon pixel array, bump-bonded to a binary readout chip with matching pixel electronics. The performance of full-scale prototypes equipped with 61-pixel anodes and external analogue readout is presented. The average signal-to-noise ratio is ~11 with a peaking time of 1.2 mu s. The tube active-to-total surface ratio is 81.7%, which meets the LHCb requirements. The spatial precision is measured to be better than 90 mu m. A cluster of three such tubes has been installed in the LHCb RICH 1 prototype where Cherenkov gas rings have been successfully detected. Progress towards the encapsulation of new pixel electronics into a tube is also reported. In particular, the status of the development of a binary readout chip with a peaking time of 25 ns and a low and uniform detection threshold is summarized. (11 refs).oai:cds.cern.ch:4374972000
spellingShingle Detectors and Experimental Techniques
Albrecht, E
Alemi, M
Barber, G J
Bibby, J H
Campbell, M
Duane, A
Gys, Thierry
Montenegro, J
Piedigrossi, D
Schomaker, R
Snoeys, W
Wotton, S A
Wyllie, Ken H
Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb
title Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb
title_full Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb
title_fullStr Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb
title_full_unstemmed Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb
title_short Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb
title_sort performance of hybrid photon detector prototypes with 80% active area for the rich counters of lhcb
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/S0168-9002(99)01216-4
http://cds.cern.ch/record/437497
work_keys_str_mv AT albrechte performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT alemim performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT barbergj performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT bibbyjh performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT campbellm performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT duanea performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT gysthierry performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT montenegroj performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT piedigrossid performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT schomakerr performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT snoeysw performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT wottonsa performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb
AT wylliekenh performanceofhybridphotondetectorprototypeswith80activeareafortherichcountersoflhcb