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Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade

This work presents a depleted monolithic active pixel sensor (DMAPS) prototype manufactured in the LFoundry 150 nm CMOS process. The described device, named LF-Monopix, was designed as a proof of concept of a fully monolithic sensor capable of operating in the environment of outer layers of the ATLA...

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Autores principales: Rymazewski, Piotr, Barbero, Marlon, Bhat, Siddharth, Breugnon, Patrick, Caicedo, Ivan, Chen, Zongde, Degerli, Yavuz, Godiot, Stephanie, Guilloux, Fabrice, Guyot, Claude, Hemperek, Tomasz, Hirono, Toko, Hügging, Fabian, Krüger, Hans, Lachkar, Mohamed, Pangaud, Patrick, Rozanov, Alexandre, Schwemling, Philippe, Vandenbroucke, Maxence, Wang, Tianyang, Wermes, Norbert
Lenguaje:eng
Publicado: SISSA 2017
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.313.0045
http://cds.cern.ch/record/2641631
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author Rymazewski, Piotr
Barbero, Marlon
Bhat, Siddharth
Breugnon, Patrick
Caicedo, Ivan
Chen, Zongde
Degerli, Yavuz
Godiot, Stephanie
Guilloux, Fabrice
Guyot, Claude
Hemperek, Tomasz
Hirono, Toko
Hügging, Fabian
Krüger, Hans
Lachkar, Mohamed
Pangaud, Patrick
Rozanov, Alexandre
Schwemling, Philippe
Vandenbroucke, Maxence
Wang, Tianyang
Wermes, Norbert
author_facet Rymazewski, Piotr
Barbero, Marlon
Bhat, Siddharth
Breugnon, Patrick
Caicedo, Ivan
Chen, Zongde
Degerli, Yavuz
Godiot, Stephanie
Guilloux, Fabrice
Guyot, Claude
Hemperek, Tomasz
Hirono, Toko
Hügging, Fabian
Krüger, Hans
Lachkar, Mohamed
Pangaud, Patrick
Rozanov, Alexandre
Schwemling, Philippe
Vandenbroucke, Maxence
Wang, Tianyang
Wermes, Norbert
author_sort Rymazewski, Piotr
collection CERN
description This work presents a depleted monolithic active pixel sensor (DMAPS) prototype manufactured in the LFoundry 150 nm CMOS process. The described device, named LF-Monopix, was designed as a proof of concept of a fully monolithic sensor capable of operating in the environment of outer layers of the ATLAS Inner Tracker upgrade for the High Luminosity Large Hadron Collider (HL-LHC). Implementing such a device in the detector module will result in a lower production cost and lower material budget compared to the presently used hybrid designs. In this paper the chip architecture will be described followed by the simulation and measurement results.
id cern-2641631
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
publisher SISSA
record_format invenio
spelling cern-26416312023-06-09T02:40:06Zdoi:10.22323/1.313.0045http://cds.cern.ch/record/2641631engRymazewski, PiotrBarbero, MarlonBhat, SiddharthBreugnon, PatrickCaicedo, IvanChen, ZongdeDegerli, YavuzGodiot, StephanieGuilloux, FabriceGuyot, ClaudeHemperek, TomaszHirono, TokoHügging, FabianKrüger, HansLachkar, MohamedPangaud, PatrickRozanov, AlexandreSchwemling, PhilippeVandenbroucke, MaxenceWang, TianyangWermes, NorbertDevelopment of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgradehep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesThis work presents a depleted monolithic active pixel sensor (DMAPS) prototype manufactured in the LFoundry 150 nm CMOS process. The described device, named LF-Monopix, was designed as a proof of concept of a fully monolithic sensor capable of operating in the environment of outer layers of the ATLAS Inner Tracker upgrade for the High Luminosity Large Hadron Collider (HL-LHC). Implementing such a device in the detector module will result in a lower production cost and lower material budget compared to the presently used hybrid designs. In this paper the chip architecture will be described followed by the simulation and measurement results.SISSAarXiv:1711.01233oai:cds.cern.ch:26416312017-11-03
spellingShingle hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Rymazewski, Piotr
Barbero, Marlon
Bhat, Siddharth
Breugnon, Patrick
Caicedo, Ivan
Chen, Zongde
Degerli, Yavuz
Godiot, Stephanie
Guilloux, Fabrice
Guyot, Claude
Hemperek, Tomasz
Hirono, Toko
Hügging, Fabian
Krüger, Hans
Lachkar, Mohamed
Pangaud, Patrick
Rozanov, Alexandre
Schwemling, Philippe
Vandenbroucke, Maxence
Wang, Tianyang
Wermes, Norbert
Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade
title Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade
title_full Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade
title_fullStr Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade
title_full_unstemmed Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade
title_short Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade
title_sort development of depleted monolithic pixel sensors in 150 nm cmos technology for the atlas inner tracker upgrade
topic hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.22323/1.313.0045
http://cds.cern.ch/record/2641631
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