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Particle tracking in kaon electroproduction with cathode-charge sampling in multi-wire proportional chambers

  • P. Achenbach
  • , C. Ayerbe Gayoso
  • , J. C. Bernauer
  • , R. Böhm
  • , D. Bosnar
  • , M. Bösz
  • , L. Debenjak
  • , M. O. Distler
  • , A. Esser
  • , I. Friščić
  • , M. Gómez Rodríguez De La Paz
  • , M. Makek
  • , H. Merkel
  • , U. Müller
  • , L. Nungesser
  • , J. Pochodzalla
  • , M. Potokar
  • , S. Sánchez Majos
  • , B. S. Schlimme
  • , S. Širca
  • M. Weinriefer
  • Johannes Gutenberg University Mainz
  • University of Zagreb
  • University of Ljubljana

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Wire chambers are routinely operated as tracking detectors in magnetic spectrometers at high-intensity continuous electron beams. Especially in experiments studying reactions with small cross-sections the reaction yield is limited by the background rate in the chambers. One way to determine the track of a charged particle through a multi-wire proportional chamber (MWPC) is the measurement of the charge distribution induced on its cathodes. In practical applications of this read-out method, the algorithm to relate the measured charge distribution to the avalanche position is an important factor for the achievable position resolution and for the track reconstruction efficiency. An algorithm was developed for operating two large-sized MWPCs in a strong background environment with multiple-particle tracks. Resulting efficiencies were determined as a function of the electron beam current and on the signal amplitudes. Because of the different energy-losses of pions, kaons, and protons in the momentum range of the spectrometer the efficiencies depend also on the particle species.

Original languageEnglish
Pages (from-to)105-113
Number of pages9
JournalNuclear Inst. and Methods in Physics Research, A
Volume641
Issue number1
DOIs
StatePublished - Jun 11 2011

Keywords

  • Electron-induced coincidence experiments
  • Magnetic spectrometers
  • Multi-wire proportional chambers
  • Tracking and position-sensitive detectors

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