Pregled bibliografske jedinice broj: 1161094
Radiation hard monolithic CMOS sensors with small electrode size for the ATLAS experiment in the HL-LHC
Radiation hard monolithic CMOS sensors with small electrode size for the ATLAS experiment in the HL-LHC // RAP Conference Proceedings
Beograd, Srbija: Sievert Association, 2020. str. 113-116 doi:10.37392/rapproc.2019.22 (predavanje, nije recenziran, cjeloviti rad (in extenso), znanstveni)
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Naslov
Radiation hard monolithic CMOS sensors with small electrode size for
the ATLAS experiment in the HL-LHC
Autori
Dachs, Florian ; Asensi Tortajada, Ignacio ; Barbero, Marlon ; Berdalovic, Ivan ; Bhat, Siddharth ; Bortoletto, Daniela ; Buttar, Craig ; Caicedo, Ivan ; Cardella, Roberto ; Dao, Valerio ; Degerli, Yavuz ; Dyndal, Mateusz ; Flores Sanz de Acedo, Leyre ; Freeman, Patrick ; Habib, Amr ; Hemperek, Tomasz ; Hiti, Bojan ; Kugathasan, Thanushan ; Moustakas, Konstantinos ; Munker, Magdalena ; Pernegger, Heinz ; Piro, Francesco ; Riedler, Petra ; Schioppa, Enrico Junior ; Schwemling, Philippe ; Sharma, Abhishek ; Argemi, Lluis Simon ; Snoeys, Walter ; Solans Sanchez, Carlos ; Suligoj, Tomislav ; Wang, Tianyang ; Wermes, Norbert
Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni
Izvornik
RAP Conference Proceedings
/ - : Sievert Association, 2020, 113-116
Skup
International Conference on Radiation Applications (RAP 2019)
Mjesto i datum
Beograd, Srbija, 16.09.2019. - 19.09.2019
Vrsta sudjelovanja
Predavanje
Vrsta recenzije
Nije recenziran
Ključne riječi
CMOS ; DMAPS ; monolithic ; pixel ; radiation hard ; silicon ; HL-LHC ; ATLAS ; TowerJazz
Sažetak
Mini-MALTA is a Monolithic Active Pixel Sensor prototype developed in the TowerJazz 180 nm CMOS imaging process, with a small collection electrode design (3 um), and a small pixel size (36.4 um), on high resistivity substrates and large voltage bias. It targets the outermost layer of the ATLAS ITK Pixel detector for the HL-LHC. This design addresses the pixel in-efficiencies observed in MALTA and TJ- Monopix to meet the radiation hardness requirements. This contribution will present the results from characterisation in particle beam tests that show full efficiency up to 1e15 neq/cm2 and 70 Mrad.
Izvorni jezik
Engleski
Znanstvena područja
Fizika, Elektrotehnika
POVEZANOST RADA
Ustanove:
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