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Status and performance results from NectarCAM -- a camera for CTA medium sized telescopes

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arxiv 1909.01969 v1 pith:FJUOOYE2 submitted 2019-09-04 astro-ph.IM astro-ph.HEhep-ex

classification astro-ph.IMastro-ph.HEhep-ex
keywords telescopescameradatawillcherenkovfirstmediumnectarcam
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The Cherenkov Telescope Array (CTA) will be the first ground-based observatory for gamma-ray astronomy. With more than a hundred of 4th generation of Imaging Atmospheric Cherenkov Telescopes (IACTs) distributed in two large arrays, CTA will reach unprecedented sensitivity, angular resolution, and spectral coverage. Three classes of IACTs -- 40 Medium-Sized Telescopes (MSTs), 8 Large-Sized Telescopes (LSTs) and 70 Small-Sized Telescopes (SSTs) -- are required to cover the full CTA energy range (20 GeV to 300 TeV). NectarCAM is a Cherenkov camera which is designed to equip medium sized telescopes of CTA, covering the central energy range from 100 GeV to 30 TeV, with a field of view of 8 degrees. It is based on a modular design with data channels using the NECTAr chip, which is equipped with both GHz sampling Switched Capacitor Array and 12-bit Analog to Digital Converter (ADC). The camera will comprise 265 modules, each consisting of 7 photomultiplier Tubes (PMTs) and a Front-End Board performing the data capture, sending the data over the Ethernet after the trigger decision at rates up to 10 kHz. This contribution provides an overview of the status of the first NectarCAM camera currently under integration in CEA Paris-Saclay (France). Furthermore, we will discuss the calibration strategies and present performance results from the CEA Paris-Saclay test bench and from the first data taken under a real sky on the prototype of medium sized telescope (MST) structure in Adlershof (Germany).

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  1. A Systematic Assessment of Data Volume Reduction for IACTs

    astro-ph.IM 2024-11 conditional novelty 5.0 of 10

    A DBSCAN time-based pixel selection retains more low-charge shower pixels than Tailcuts at matched data-reduction factors in CTAO simulations, with mixed noise-rejection performance.

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