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Performance in beam tests of carbon-enriched irradiated Low Gain Avalanche Detectors for the ATLAS High Granularity Timing Detector

  • S. Ali
  • , H. Arnold
  • , S. Auwens
  • , L. Beresford
  • , D. Boumediene
  • , A. Burger
  • , L. Cadamuro
  • , L. Castillo García
  • , L. Corpe
  • , M. Da Cunha Sargedas de Sousa
  • , D. Dannheim
  • , V. Dao
  • , A. Gabrielli
  • , Y. El Ghazali
  • , H. El Jarrari
  • , V. Gautam
  • , S. Grinstein
  • , J. Guimarães da Costa
  • , S. Guindon
  • , X. Jia
  • G. Kramberger, Y. Liu, K. Ma, N. Makovec, S. Manzoni, I. Nikolic, O. Perrin, V. Raskina, M. Robles Manzano, A. Rummler, Y. Tayalati, S. Trincaz-Duvoid, A. Visibile, S. Xin, L. Xu, X. Yang, X. Zheng
  • Academia Sinica Taiwan HQ
  • Radboud University Nijmegen
  • German Electron Synchrotron
  • Université Clermont Auvergne
  • Institut de Physique Nucléaire
  • Institute for High Energy Physics
  • University of Science and Technology of China
  • CERN
  • Ibn Tofail University
  • Mohammed V University in Rabat
  • ICREA
  • CAS - Institute of High Energy Physics
  • University of Chinese Academy of Sciences
  • Jožef Stefan Institute
  • Sorbonne Université
  • Johannes Gutenberg University Mainz
  • University of Amsterdam

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

The High Granularity Timing Detector (HGTD) will be installed in the ATLAS experiment to mitigate pile-up effects during the High Luminosity (HL) phase of the Large Hadron Collider (LHC) at CERN. Low Gain Avalanche Detectors (LGADs) will provide high-precision measurements of the time of arrival of particles at the HGTD, improving the particle-vertex assignment. To cope with the high-radiation environment, LGADs have been optimized by adding carbon in the gain layer, thus reducing the acceptor removal rate after irradiation. Performances of several carbon-enriched LGAD sensors from different vendors, and irradiated with high fluences of 1.5 and 2.5 × 1015 neq/cm2, have been measured in beam test campaigns during the years 2021 and 2022 at CERN SPS and DESY. This paper presents the results obtained with data recorded by an oscilloscope synchronized with a beam telescope which provides particle position information within a resolution of a few μm. Collected charge, time resolution and hit efficiency measurements are presented. In addition, the efficiency uniformity is also studied as a function of the position of the incident particle inside the sensor pad.

Original languageEnglish
Article numberP05005
JournalJournal of Instrumentation
Volume18
Issue number5
DOIs
StatePublished - May 1 2023

Keywords

  • Solid state detectors
  • Timing detectors

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