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The Heavy Photon Search test detector

  • M. Battaglieri
  • , S. Boyarinov
  • , S. Bueltmann
  • , V. Burkert
  • , A. Celentano
  • , G. Charles
  • , W. Cooper
  • , C. Cuevas
  • , N. Dashyan
  • , R. Devita
  • , C. Desnault
  • , A. Deur
  • , H. Egiyan
  • , L. Elouadrhiri
  • , R. Essig
  • , V. Fadeyev
  • , C. Field
  • , A. Freyberger
  • , Y. Gershtein
  • , N. Gevorgyan
  • F. X. Girod, N. Graf, M. Graham, K. Griffioen, A. Grillo, M. Guidal, G. Haller, P. Hansson Adrian, R. Herbst, M. Holtrop, J. Jaros, S. Kaneta, M. Khandaker, A. Kubarovsky, V. Kubarovsky, T. Maruyama, J. McCormick, K. Moffeit, O. Moreno, H. Neal, T. Nelson, S. Niccolai, A. Odian, M. Oriunno, R. Paremuzyan, R. Partridge, S. K. Phillips, E. Rauly, B. Raydo, J. Reichert, E. Rindel, P. Rosier, C. Salgado, P. Schuster, Y. Sharabian, D. Sokhan, S. Stepanyan, N. Toro, S. Uemura, M. Ungaro, H. Voskanyan, D. Walz, L. B. Weinstein, B. Wojtsekhowski
  • National Institute for Nuclear Physics
  • Thomas Jefferson National Accelerator Facility
  • Old Dominion University
  • IN2P3-CNRS
  • Fermi National Accelerator Laboratory
  • A. Alikhanian Yerevan Institute of Physics
  • University of California at Santa Cruz
  • SLAC National Accelerator Laboratory
  • Rutgers - The State University of New Jersey, New Brunswick
  • College of William and Mary
  • University of New Hampshire
  • Norfolk State University
  • Rensselaer Polytechnic Institute
  • Perimeter Institute for Theoretical Physics
  • University of Glasgow

Research output: Contribution to journalArticlepeer-review

47 Scopus citations

Abstract

The Heavy Photon Search (HPS), an experiment to search for a hidden sector photon in fixed target electroproduction, is preparing for installation at the Thomas Jefferson National Accelerator Facility (JLab) in the Fall of 2014. As the first stage of this project, the HPS Test Run apparatus was constructed and operated in 2012 to demonstrate the experiments technical feasibility and to confirm that the trigger rates and occupancies are as expected. This paper describes the HPS Test Run apparatus and readout electronics and its performance. In this setting, a heavy photon can be identified as a narrow peak in the e+e- invariant mass spectrum above the trident background or as a narrow invariant mass peak with a decay vertex displaced from the production target, so charged particle tracking and vertexing are needed for its detection. In the HPS Test Run, charged particles are measured with a compact forward silicon microstrip tracker inside a dipole magnet. Electromagnetic showers are detected in a PbW04 crystal calorimeter situated behind the magnet, and are used to trigger the experiment and identify electrons and positrons. Both detectors are placed close to the beam line and split top-bottom. This arrangement provides sensitivity to low-mass heavy photons, allows clear passage of the unscattered beam, and avoids the spray of degraded electrons coming from the target. The discrimination between prompt and displaced e+e- pairs requires the first layer of silicon sensors be placed only 10 cm downstream of the target. The expected signal is small, and the trident background huge, so the experiment requires very large statistics. Accordingly, the HPS Test Run utilizes high-rate readout and data acquisition electronics and a fast trigger to exploit the essentially 100% duty cycle of the CEBAF accelerator at JLab.

Original languageEnglish
Pages (from-to)91-101
Number of pages11
JournalNuclear Inst. and Methods in Physics Research, A
Volume777
DOIs
StatePublished - Mar 21 2015

Keywords

  • Dark photon
  • Electromagnetic calorimeter
  • Heavy photon
  • Silicon
  • Tracking
  • Vertexing

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