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Latest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHC

The MALTA sensors are Depleted Monolithic Active Pixel Sensors (DMAPS) made using 180nm TowerJazz CMOS technology. These have been iteratively designed towards achieving a high radiation tolerance for applications such as in the outer layers of the HL-LHC’s ATLAS Inner Tracker. To date several desig...

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Autores principales: Sharma, Abhishek, Allport, Phil, Asensi, Ignacio, Berdalovic, Ivan, Bortoletto, Daniela, Buttar, Craig, Cardella, Roberto, Dachs, Florian, Dao, Valerio, Dobrijevic, Dominik, Dyndal, Mateusz, Flores, Leyre, Freeman, Patrick, Gabrielli, Andrea, Gonella, Laura, LeBlanc, Matt, Oyulmaz, Kaan, Pernegger, Heinz, Piro, Francesco, Riedler, Petra, van Rijnbach, Milou, Sandaker, Heidi, Solans, Carlos, Snoeys, Walter, Suligoj, Tomislav, Torres, Jose, Worm, Steven
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.398.0818
http://cds.cern.ch/record/2827241
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author Sharma, Abhishek
Allport, Phil
Asensi, Ignacio
Berdalovic, Ivan
Bortoletto, Daniela
Buttar, Craig
Cardella, Roberto
Dachs, Florian
Dao, Valerio
Dobrijevic, Dominik
Dyndal, Mateusz
Flores, Leyre
Freeman, Patrick
Gabrielli, Andrea
Gonella, Laura
LeBlanc, Matt
Oyulmaz, Kaan
Pernegger, Heinz
Piro, Francesco
Riedler, Petra
van Rijnbach, Milou
Sandaker, Heidi
Solans, Carlos
Snoeys, Walter
Suligoj, Tomislav
Torres, Jose
Worm, Steven
author_facet Sharma, Abhishek
Allport, Phil
Asensi, Ignacio
Berdalovic, Ivan
Bortoletto, Daniela
Buttar, Craig
Cardella, Roberto
Dachs, Florian
Dao, Valerio
Dobrijevic, Dominik
Dyndal, Mateusz
Flores, Leyre
Freeman, Patrick
Gabrielli, Andrea
Gonella, Laura
LeBlanc, Matt
Oyulmaz, Kaan
Pernegger, Heinz
Piro, Francesco
Riedler, Petra
van Rijnbach, Milou
Sandaker, Heidi
Solans, Carlos
Snoeys, Walter
Suligoj, Tomislav
Torres, Jose
Worm, Steven
author_sort Sharma, Abhishek
collection CERN
description The MALTA sensors are Depleted Monolithic Active Pixel Sensors (DMAPS) made using 180nm TowerJazz CMOS technology. These have been iteratively designed towards achieving a high radiation tolerance for applications such as in the outer layers of the HL-LHC’s ATLAS Inner Tracker. To date several design enhancements have been implemented to attain a high time resolution (<2ns), granularity as well as achieving excellent charge collection efficiency uniformly across the pixel geometries. This technology promises to drastically cut the production cost of silicon sensors due to their monolithic design, bypassing the costly stage of bump bonding in hybrid sensors. This talk will provide a detailed overview of the comprehensive characterisation studies conducted on the MALTA and Mini-MALTA sensors as well as present newer functionalities being introduced in the latest iteration, the MALTA2.
id cern-2827241
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28272412022-09-16T21:13:05Zdoi:10.22323/1.398.0818http://cds.cern.ch/record/2827241engSharma, AbhishekAllport, PhilAsensi, IgnacioBerdalovic, IvanBortoletto, DanielaButtar, CraigCardella, RobertoDachs, FlorianDao, ValerioDobrijevic, DominikDyndal, MateuszFlores, LeyreFreeman, PatrickGabrielli, AndreaGonella, LauraLeBlanc, MattOyulmaz, KaanPernegger, HeinzPiro, FrancescoRiedler, Petravan Rijnbach, MilouSandaker, HeidiSolans, CarlosSnoeys, WalterSuligoj, TomislavTorres, JoseWorm, StevenLatest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHCDetectors and Experimental TechniquesThe MALTA sensors are Depleted Monolithic Active Pixel Sensors (DMAPS) made using 180nm TowerJazz CMOS technology. These have been iteratively designed towards achieving a high radiation tolerance for applications such as in the outer layers of the HL-LHC’s ATLAS Inner Tracker. To date several design enhancements have been implemented to attain a high time resolution (<2ns), granularity as well as achieving excellent charge collection efficiency uniformly across the pixel geometries. This technology promises to drastically cut the production cost of silicon sensors due to their monolithic design, bypassing the costly stage of bump bonding in hybrid sensors. This talk will provide a detailed overview of the comprehensive characterisation studies conducted on the MALTA and Mini-MALTA sensors as well as present newer functionalities being introduced in the latest iteration, the MALTA2.oai:cds.cern.ch:28272412022
spellingShingle Detectors and Experimental Techniques
Sharma, Abhishek
Allport, Phil
Asensi, Ignacio
Berdalovic, Ivan
Bortoletto, Daniela
Buttar, Craig
Cardella, Roberto
Dachs, Florian
Dao, Valerio
Dobrijevic, Dominik
Dyndal, Mateusz
Flores, Leyre
Freeman, Patrick
Gabrielli, Andrea
Gonella, Laura
LeBlanc, Matt
Oyulmaz, Kaan
Pernegger, Heinz
Piro, Francesco
Riedler, Petra
van Rijnbach, Milou
Sandaker, Heidi
Solans, Carlos
Snoeys, Walter
Suligoj, Tomislav
Torres, Jose
Worm, Steven
Latest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHC
title Latest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHC
title_full Latest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHC
title_fullStr Latest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHC
title_full_unstemmed Latest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHC
title_short Latest developments and characterisation results of the MALTA sensors in TowerJazz 180nm for High Luminosity LHC
title_sort latest developments and characterisation results of the malta sensors in towerjazz 180nm for high luminosity lhc
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.22323/1.398.0818
http://cds.cern.ch/record/2827241
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