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Performance of a Quintuple-GEM Based RICH Detector Prototype

  • Marie Blatnik
  • , Klaus Dehmelt
  • , Abhay Deshpande
  • , Dhruv DIxit
  • , Nils Feege
  • , Thomas K. Hemmick
  • , Benji Lewis
  • , Martin L. Purschke
  • , William Roh
  • , Fernando Torales-Acosta
  • , Thomas Videbaek
  • , Stephanie Zajac
  • Stony Brook University
  • Brookhaven National Laboratory

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Cerenkov technology is often the optimal choice for particle identification in high energy particle collision applications. Typically, the most challenging regime is at high pseudorapidity (forward) where particle identification must perform well at high laboratory momenta. For the upcoming electron ion collider (EIC), the physics goals require hadron (pi,{rm K, p}) identification up to sim hbox{50GeV/c}. In this region Cerenkov ring-imaging (RICH) is the most viable solution. The speed of light in a radiator medium is inversely proportional to the refractive index. Hence, for particle identification (PID) reaching out to high momenta a small index of refraction is required. Unfortunately, the lowest indices of refraction also result in the lowest light yield propto mathop driving up the radiator length and thereby the overall detector cost. In this paper we report on a successful test of a compact RICH detector (1 meter radiator) capable of delivering in excess of 10 photoelectrons per ring with a low index radiator gas 4). The detector concept is a natural extension of the PHENIX hadron-blind detector (HBD) achieved by adding focusing capability at low wavelength and adequate gain for high efficiency detection of single-electron induced avalanches. Our results indicate that this technology is indeed a viable choice in the forward direction of the EIC. The setup and results are described within.

Original languageEnglish
Article number7349014
Pages (from-to)3256-3264
Number of pages9
JournalIEEE Transactions on Nuclear Science
Volume62
Issue number6
DOIs
StatePublished - Dec 2015

Keywords

  • Cerenkov detectors
  • gem detectors
  • micropattern gas chambers
  • nuclear physics instrumentation
  • particle detectors
  • particle measurements
  • rich detectors

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