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A Major Upgrade of the H.E.S.S. Cherenkov Cameras

  • Iryna Lypova
  • , Gianluca Giavitto
  • , Terry Ashton
  • , Arnim Balzer
  • , David Berge
  • , Francois Brun
  • , Thomas Chaminade
  • , Eric Delagnes
  • , Gerard Fontaine
  • , Matthias Füßling
  • , Berrie Giebels
  • , Jean Francois Glicenstein
  • , Tobias Gräber
  • , Jim Hinton
  • , Albert Jahnke
  • , Stefan Klepser
  • , Marko Kossatz
  • , Axel Kretzschmann
  • , Valentin Lefranc
  • , Holger Leich
  • Hartmut Lüdecke, Pascal Manigot, Vincent Marandon, Emmanuel Moulin, Mathieu De Naurois, Patrick Nayman, Stefan Ohm, Marek Penno, Duncan Ross, David Salek, Markus Schade, Thomas Schwab, Rachel Simoni, Christian Stegmann, Constantin Steppa, Julian Thornhill, Francois Toussnel
  • c/o DESY
  • University of Leicester
  • University of Amsterdam
  • Universite Paris-Saclay
  • Ip Paris
  • Max-Planck-Institut für Kernphysik
  • Universités Paris VI and VII

Résultats de recherche: Contribution à un journalArticle de conférenceRevue par des pairs

Résumé

The High Energy Stereoscopic System (H.E.S.S.) is an array of imaging atmospheric Cherenkov telescopes (IACTs) located in Namibia. It was built to detect Very High Energy (VHE, >100 GeV) cosmic gamma rays, and consists of four 12 m diameter Cherenkov telescopes (CT1-4), built in 2003, and a larger 28 m telescope (CT5), built in 2012. The larger mirror surface of CT5 permits to lower the energy threshold of the array down to 30 GeV. The cameras of CT1-4 are currently undergoing an extensive upgrade, with the goals of reducing their failure rate, reducing their readout dead time and improving the overall performance of the array. The entire camera electronics has been renewed from ground-up, as well as the power, ventilation and pneumatics systems, and the control and data acquisition software. Technical solutions forseen for the next-generation Cherenkov Telescope Array (CTA) observatory have been introduced, most notably the readout is based on the NECTAr analog memory chip. The camera control subsystems and the control software framework also pursue an innovative design, increasing the camera performance, robustness and flexibility. The CT1 camera has been upgraded in July 2015 and is currently taking data; CT2-4 will upgraded in Fall 2016. Together they will assure continuous operation of H.E.S.S at its full sensitivity until and possibly beyond the advent of CTA. This contribution describes the design, the testing and the in-lab and on-site performance of all components of the newly upgraded H.E.S.S. camera.

langue originaleAnglais
Numéro d'article03002
journalEPJ Web of Conferences
Volume136
Les DOIs
étatPublié - 23 mars 2017
Modification externeOui
Evénement6th Roma International Conference on Astroparticle Physics, RICAP 2016 - Frascati, Roma, Italie
Durée: 21 juin 201624 juin 2016

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