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A novel diamond-like carbon based photocathode for PICOSEC Micromegas detectors

  • X. Wang
  • , R. Aleksan
  • , Y. Angelis
  • , J. Bortfeldt
  • , F. Brunbauer
  • , M. Brunoldi
  • , E. Chatzianagnostou
  • , J. Datta
  • , K. Degmelt
  • , G. Fanourakis
  • , D. Fiorina
  • , K. J. Floethner
  • , M. Gallinaro
  • , F. Garcia
  • , I. Giomataris
  • , K. Gnanvo
  • , F. J. Iguaz
  • , D. Janssens
  • , A. Kallitsopoulou
  • , M. Kovacic
  • B. Kross, P. Legou, M. Lisowska, J. Liu, I. Maniatis, J. McKisson, Y. Meng, H. Muller, E. Oliveri, G. Orlandini, A. Pandey, T. Papaevangelou, M. Pomorski, L. Ropelewski, D. Sampsonidis, L. Scharenberg, T. Schneider, L. Shang, M. Shao, L. Sohl, M. van Stenis, Y. Tsipolitis, S. E. Tzamarias, A. Utrobicic, I. Vai, R. Veenhof, P. Vitulo, S. White, W. Xi, Z. Zhang, Y. Zhou
  • University of Science and Technology of China
  • University of Science and Technology of China
  • Université Paris-Saclay
  • Aristotle University of Thessaloniki
  • Ludwig Maximilian University of Munich
  • CERN
  • University of Pavia
  • National Institute for Nuclear Physics
  • Thomas Jefferson National Accelerator Facility
  • Demokritos National Centre for Scientific Research
  • University of Bonn
  • Laboratório de Instrumentação e Física Experimental de Partículas
  • University of Helsinki
  • University of Zagreb
  • Friedrich-Alexander University Erlangen-Nürnberg
  • CEA Saclay
  • Center for Interdisciplinary Research and Innovation (CIRI-AUTH)
  • CAS - Lanzhou Institute of Chemical Physics
  • National Technical University of Athens
  • Ruder Boskovic Institute
  • University of Virginia

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

The PICOSEC Micromegas (MM) detector is a precise timing gaseous detector based on a MM detector operating in a two-stage amplification mode and a Cherenkov radiator. Prototypes equipped with cesium iodide (CsI) photocathodes have shown promising time resolutions as precise as 24 picoseconds (ps) for Minimum Ionizing Particles. However, due to the high hygroscopicity and susceptibility to ion bombardment of the CsI photocathodes, alternative photocathode materials are needed to improve the robustness of PICOSEC MM. Diamond-like Carbon (DLC) film have been introduced as a novel robust photocathode material, which have shown promising results. A batch of DLC photocathodes with different thicknesses were produced and evaluated using ultraviolet light. The quantum efficiency measurements indicate that the optimized thickness of the DLC photocathode is approximately 3 nm. Furthermore, DLC photocathodes show good resistance to ion bombardment in aging test compared to the CsI photocathode. Finally, a PICOSEC MM prototype equipped with DLC photocathodes was tested in muon beams. A time resolution of around 42 ps with a detection efficiency of 97% for 150 GeV/c muons were obtained. These results indicate the great potential of DLC as a photocathode for the PICOSEC MM detector.

Original languageEnglish
Article numberP08010
JournalJournal of Instrumentation
Volume19
Issue number8
DOIs
StatePublished - Aug 1 2024

Keywords

  • Micropattern gaseous detectors (MSGC, GEM, THGEM, RETHGEM, MHSP, MICROPIC, MICROMEGAS, InGrid, etc)
  • Photocathodes and their production
  • Timing detectors

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