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Depleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS Technologies

The monolithic CMOS pixel sensor for charged particle tracking has already become a mainstream technology in high energy particle physics (HEP) experiments. During the last decade, progressive improvements have been made for CMOS pixels to deal with the high-radiation and high-rate environments expe...

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Autores principales: Wang, T, Barbero, M, Barrillon, P, Berdalovic, I, Bespin, C, Bhat, S, Breugnon, P, Caicedo, I, Cardella, R, Chen, Z, Degerli, Y, Dingfelder, J, Flores Sanz De Acedo, L, Godiot, S, Guilloux, F, Hemperek, T, Hirono, T, Hügging, F, Krüger, H, Kugathasan, T, Moustakas, K, Ouraou, A, Pangaud, P, Pernegger, H, Piro, F, Pohl, D-L, Riedler, P, Rymaszewski, P, Schwemling, P, Snoeys, W, Vandenbroucke, M, Wermes, N, Zhang, S
Lenguaje:eng
Publicado: SISSA 2020
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.373.0026
http://cds.cern.ch/record/2747751
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author Wang, T
Barbero, M
Barrillon, P
Berdalovic, I
Bespin, C
Bhat, S
Breugnon, P
Caicedo, I
Cardella, R
Chen, Z
Degerli, Y
Dingfelder, J
Flores Sanz De Acedo, L
Godiot, S
Guilloux, F
Hemperek, T
Hirono, T
Hügging, F
Krüger, H
Kugathasan, T
Moustakas, K
Ouraou, A
Pangaud, P
Pernegger, H
Piro, F
Pohl, D-L
Riedler, P
Rymaszewski, P
Schwemling, P
Snoeys, W
Vandenbroucke, M
Wermes, N
Zhang, S
author_facet Wang, T
Barbero, M
Barrillon, P
Berdalovic, I
Bespin, C
Bhat, S
Breugnon, P
Caicedo, I
Cardella, R
Chen, Z
Degerli, Y
Dingfelder, J
Flores Sanz De Acedo, L
Godiot, S
Guilloux, F
Hemperek, T
Hirono, T
Hügging, F
Krüger, H
Kugathasan, T
Moustakas, K
Ouraou, A
Pangaud, P
Pernegger, H
Piro, F
Pohl, D-L
Riedler, P
Rymaszewski, P
Schwemling, P
Snoeys, W
Vandenbroucke, M
Wermes, N
Zhang, S
author_sort Wang, T
collection CERN
description The monolithic CMOS pixel sensor for charged particle tracking has already become a mainstream technology in high energy particle physics (HEP) experiments. During the last decade, progressive improvements have been made for CMOS pixels to deal with the high-radiation and high-rate environments expected, for example, at the future High Luminosity LHC. One of the key ingredients of these improvements is to achieve a fully depleted sensitive layer, where the charge collection is guided by strong drift field lines. CMOS sensors incorporating such charge collection property, often referred to as DMAPS (Depleted Monolithic Active Pixel Sensor), have been recently demonstrated in several large-scale monolithic prototypes with integrated fast readout architectures. This contribution summarizes the recent progress made on the large-scale DMPAS development, focusing on two demonstrator chips designed in the LFoundry 150 nm and the TowerJazz 150 nm CMOS processes, namely LF-Monopix1 and TJ-Monopix1.
id oai-inspirehep.net-1816961
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
publisher SISSA
record_format invenio
spelling oai-inspirehep.net-18169612021-01-27T21:58:03Zdoi:10.22323/1.373.0026http://cds.cern.ch/record/2747751engWang, TBarbero, MBarrillon, PBerdalovic, IBespin, CBhat, SBreugnon, PCaicedo, ICardella, RChen, ZDegerli, YDingfelder, JFlores Sanz De Acedo, LGodiot, SGuilloux, FHemperek, THirono, THügging, FKrüger, HKugathasan, TMoustakas, KOuraou, APangaud, PPernegger, HPiro, FPohl, D-LRiedler, PRymaszewski, PSchwemling, PSnoeys, WVandenbroucke, MWermes, NZhang, SDepleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS TechnologiesDetectors and Experimental TechniquesThe monolithic CMOS pixel sensor for charged particle tracking has already become a mainstream technology in high energy particle physics (HEP) experiments. During the last decade, progressive improvements have been made for CMOS pixels to deal with the high-radiation and high-rate environments expected, for example, at the future High Luminosity LHC. One of the key ingredients of these improvements is to achieve a fully depleted sensitive layer, where the charge collection is guided by strong drift field lines. CMOS sensors incorporating such charge collection property, often referred to as DMAPS (Depleted Monolithic Active Pixel Sensor), have been recently demonstrated in several large-scale monolithic prototypes with integrated fast readout architectures. This contribution summarizes the recent progress made on the large-scale DMPAS development, focusing on two demonstrator chips designed in the LFoundry 150 nm and the TowerJazz 150 nm CMOS processes, namely LF-Monopix1 and TJ-Monopix1.SISSAoai:inspirehep.net:18169612020
spellingShingle Detectors and Experimental Techniques
Wang, T
Barbero, M
Barrillon, P
Berdalovic, I
Bespin, C
Bhat, S
Breugnon, P
Caicedo, I
Cardella, R
Chen, Z
Degerli, Y
Dingfelder, J
Flores Sanz De Acedo, L
Godiot, S
Guilloux, F
Hemperek, T
Hirono, T
Hügging, F
Krüger, H
Kugathasan, T
Moustakas, K
Ouraou, A
Pangaud, P
Pernegger, H
Piro, F
Pohl, D-L
Riedler, P
Rymaszewski, P
Schwemling, P
Snoeys, W
Vandenbroucke, M
Wermes, N
Zhang, S
Depleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS Technologies
title Depleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS Technologies
title_full Depleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS Technologies
title_fullStr Depleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS Technologies
title_full_unstemmed Depleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS Technologies
title_short Depleted Monolithic Active Pixel Sensors in the LFoundry 150 nm and TowerJazz 180 nm CMOS Technologies
title_sort depleted monolithic active pixel sensors in the lfoundry 150 nm and towerjazz 180 nm cmos technologies
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.22323/1.373.0026
http://cds.cern.ch/record/2747751
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