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A large-scale FPGA-based trigger and dead-time free DAQ system for the KAOS spectrometer at MAMI

  • Patrick Achenbach
  • , C. Ayerbe Gayoso
  • , J. C. Bernauer
  • , R. Böhm
  • , D. Bosnar
  • , L. Debenjak
  • , M. O. Distler
  • , A. Esser
  • , I. Frišcic
  • , M. Gómez Rodríguez De La Paz
  • , J. Hoffmann
  • , M. Makek
  • , H. Merkel
  • , S. Minami
  • , U. Müller
  • , L. Nungesser
  • , W. Ott
  • , J. Pochodzalla
  • , M. Potokar
  • , I. Rusanov
  • T. R. Saito, S. S. Sánchez Majos, B. S. Schlimme, S. Širca, S. Voltz, K. Weindel, M. Weinriefer
  • Johannes Gutenberg University Mainz
  • University of Zagreb
  • University of Ljubljana
  • GSI Helmholtz Centre for Heavy Ion Research

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

The KAOS spectrometer is maintained by the A1 collaboration at the Mainz Microtron MAMI with a focus on the study of (e,e′K +) coincidence reactions. For its electron-arm two vertical planes of fiber arrays, each comprising approximately 10000 fibers, are operated close to zero degree scattering angle and in close proximity to the electron beam. A nearly dead-time free DAQ system to acquire timing and tracking information has been installed for this spectrometer arm. The signals of 144 multianode photomultipliers are collected by 96-channel front-end boards, digitized by double-threshold discriminators and the signal time is picked up by state-of-the-art F1 time-to-digital converter chips. In order to minimize background rates a sophisticated trigger logic was implemented in newly developed Vuprom modules. The trigger performs noise suppression, signal cluster finding, particle tracking and coincidence timing and can be expanded for kinematical matching (e′K +) coincidences. The full system was designed to process more than 4000 read-out channels and to cope with the high electron flux in the spectrometer and the high count rate requirement of the detectors. It was successfully in-beam tested at MAMI in 2009.

Original languageEnglish
Article number5934617
Pages (from-to)1677-1684
Number of pages8
JournalIEEE Transactions on Nuclear Science
Volume58
Issue number4 PART 1
DOIs
StatePublished - Aug 2011

Keywords

  • Nuclear physics
  • photomultipliers
  • programmable logic arrays
  • spectroscopy
  • trigger circuits

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