Skip to main navigation Skip to search Skip to main content

Towards robust PICOSEC Micromegas precise timing detectors

  • M. Lisowska
  • , Y. Angelis
  • , S. Aune
  • , J. Bortfeldt
  • , F. Brunbauer
  • , E. Chatzianagnostou
  • , K. Dehmelt
  • , D. Desforge
  • , G. Fanourakis
  • , K. J. Floethner
  • , M. Gallinaro
  • , F. Garcia
  • , P. Garg
  • , I. Giomataris
  • , K. Gnanvo
  • , T. Gustavsson
  • , F. J. Iguaz
  • , D. Janssens
  • , A. Kallitsopoulou
  • , M. Kovacic
  • P. Legou, J. Liu, M. Lupberger, S. Malace, I. Maniatis, Y. Meng, H. Muller, E. Oliveri, G. Orlandini, T. Papaevangelou, M. Pomorski, L. Ropelewski, D. Sampsonidis, L. Scharenberg, T. Schneider, E. Scorsone, L. Sohl, M. Van Stenis, Y. Tsipolitis, S. E. Tzamarias, A. Utrobicic, R. Veenhof, X. Wang, S. White, Z. Zhang, Y. Zhou
  • CERN
  • Université Paris-Saclay
  • Aristotle University of Thessaloniki
  • Ludwig Maximilian University of Munich
  • Demokritos National Centre for Scientific Research
  • University of Bonn
  • Laboratório de Instrumentação e Física Experimental de Partículas
  • University of Helsinki
  • Stony Brook University
  • Thomas Jefferson National Accelerator Facility
  • Inter-University Institute for High Energies ULB-VUB
  • Vrije Universiteit Brussel
  • University of Zagreb
  • University of Science and Technology of China
  • Friedrich-Alexander University Erlangen-Nürnberg
  • CEA Saclay
  • Center for Interdisciplinary Research and Innovation (CIRI-AUTH)
  • National Technical University of Athens
  • Ruder Boskovic Institute
  • Uludag University
  • University of Virginia

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

The PICOSEC Micromegas (MM) detector is a precise timing gaseous detector consisting of a Cherenkov radiator combined with a photocathode and a MM amplifying structure. A 100-channel PICOSEC MM prototype with 10 × 10 cm2 active area equipped with a Cesium Iodide (CsI) photocathode demonstrated a time resolution below σ = 18 ps. The objective of this work is to improve the PICOSEC MM detector robustness aspects, i.e. integration of resistive MM and carbon-based photocathodes, while maintaining good time resolution. The PICOSEC MM prototypes have been tested in laboratory conditions and successfully characterised with 150 GeV/c muon beams at the CERN SPS H4 beam line. The excellent timing performance below σ = 20 ps for an individual pad obtained with the 10 × 10 cm2 area resistive PICOSEC MM of 20 Mω/□ showed no significant time resolution degradation as a result of adding a resistive layer. A single-pad prototype equipped with a 12 nm thick Boron Carbide (B4C) photocathode presented a time resolution below σ = 35 ps, opening up new possibilities for detectors with robust photocathodes. The results made the concept more suitable for the experiments in need of robust detectors with good time resolution.

Original languageEnglish
Article numberC07018
JournalJournal of Instrumentation
Volume18
Issue number7
DOIs
StatePublished - Jul 1 2023

Keywords

  • Cherenkov detectors
  • Micropattern gaseous detectors (MSGC, GEM, THGEM, RETHGEM, MHSP, MICROPIC, MICROMEGAS, InGrid, etc)
  • Timing detectors

Fingerprint

Dive into the research topics of 'Towards robust PICOSEC Micromegas precise timing detectors'. Together they form a unique fingerprint.

Cite this