Published September 2, 2023 | Version v1

Radiation Hardness of Digital Pixel Sensor Prototypes in 65 nm CMOS Technology for the ALICE ITS3 Upgrade

Authors/Creators

  • 1. ROR icon University of Münster
  • 1. University of Münster

Description

The ALICE Inner Tracking System will be upgraded to its third version (ITS3) in the LHC Long Shutdown 3 (2026-2028). The ITS Inner Barrel will be replaced by a truly cylindrical detector consisting of six half-layers from stitched wafer-scale monolithic active pixel sensors (MAPS). The sensor chip will produced in the TPSCo. 65 nm CMOS technology. In a first submission in this technology, several different test structures were produced. One of them is the Digital Pixel Test Structure (DPTS), which features 1024 pixel with a digital readout. In order to evaluate the radiation hardness of this test structure, irradiation campaigns with X-rays as well as with neutrons were carried out. Results from these studies demonstrate sufficient radiation hardness of these structures to ionizing doses of 10 kGy and non-ionizing doses of 1e13 1 MeV neq cm−2 as required for the ITS3. Moreover, this technology is candidate for the potentially upcoming ALICE 3 upgrade, where much higher radiation doses are expected. First results indicate that a sufficient ionizing radiation hardness is realistic in this technology. The non-ionizing radiation hardness is not sufficiently demonstrated yet. However, previous studies focused mainly on the operation at room temperature whereas sub-zero cooling is a viable option for ALICE 3.

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Additional details

CERN

Programme
No program participation
Experiment
ALICE
Projects
ITS3

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