FACT - operation of the First G-APD Cherenkov Telescope

T Bretz,A Biland,J Buss,V Commichau,L Djambazov,D Dorner,S Einecke,D Eisenacher, J Freiwald,O Grimm,H Von Gunten,C Haller, C Hempfling,D Hildebrand,G Hughes,U Horisberger, M L Knoetig, T Krahenbuhl, W Lustermann, E Lyard,K Mannheim,K Meier,Steffen Mueller,D Neise, A K Overkemping, A Paravac, F Pauss,W Rhode,U Roser, J P Stucki, T Steinbring, F Temme, J Thaele,P Vogler,Roland Walter,Q Weitzel

Real Time Conference(2014)

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摘要
Since more than two years, the First G-APD Cherenkov Telescope (FACT) is operating successfully at the Canary Island of La Palma. Apart from its purpose to serve as a monitoring facility for the brightest TeV blazars, it was built as a major step to establish solid state photon counters as detectors in Cherenkov astronomy. The camera of the First G-APD Cherenkov Telesope comprises 1440 Geiger-mode avalanche photo diodes (G-APD aka. MPPC or SiPM) for photon detection. Since properties as the gain of G-APDs depend on temperature and the applied voltage, a realtime feedback system has been developed and implemented. To correct for the change introduced by temperature, several sensors have been placed close to the photon detectors. Their read out is used to calculate a corresponding voltage offset. In addition to temperature changes, changing current introduces a voltage drop in the supporting resistor network. To correct changes in the voltage drop introduced by varying photon flux from the night-sky background, the current is measured and the voltage drop calculated. To check the stability of the G-APD properties, dark count spectra with high statistics have been taken under different environmental conditions and been evaluated.
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cherenkov counters,astronomical telescopes,avalanche photodiodes,cameras,data compression,gamma-ray apparatus,readout electronics,resistors,cpu cores,canary island,cherenkov astronomy,g-apd cherenkov telescope,g-apd properties,geiger-mode avalanche photodiodes,la palma,mppc,sipm,brightest tev blazars,camera,compression ratio,dark count spectra,data taking,environmental conditions,loss-less algorithm,maximum data rate,monitoring facility,night-sky background,photon detection,photon detectors,photon flux,quick-look analysis,real-time feedback system,remote shifter,resistor network,solid state photon counters,sudden weather changes,temperature changes,voltage drop,voltage offset,fact,geiger-mode avalanche photo diode,focal plane,temperature measurement
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