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A Neural Network-Based Monoscopic Reconstruction Algorithm for H.E.S.S. II

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arxiv 1509.00794 v1 pith:B2LUIDAS submitted 2015-09-02 astro-ph.IM

classification astro-ph.IM
keywords algorithmreconstructionenergygammamonoscopicareaarraydetected
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abstract

The H.E.S.S. experiment entered its phase II with the addition of a new, large telescope named CT 5 that was added to the centre of the existing array of four smaller telescopes. The new telescope is able to detect fainter air showers due to its larger mirror area, thereby lowering the energy threshold of the array from a few hundred GeV down to $\mathcal{O}(50\,\textrm{GeV})$. Due to the power-law decrease of typical {\gamma}-ray and cosmic-ray spectra of astrophysical sources a majority of detected air showers are of low energies, thus being detected by CT 5 only, which motivates the need for a reconstruction algorithm based on information from CT 5 alone. By exploiting such monoscopic events the H.E.S.S. experiment in phase II becomes sensitive in an energy range not covered by H.E.S.S. I and in which the Fermi LAT runs out of statistics. Furthermore the chance of detecting transient phenomena like {\gamma}-ray bursts is increased significantly due to the large effective area of CT 5 at low energies. In this contribution a newly developed reconstruction algorithm for monoscopic events based on neural networks is presented. This algorithm uses multilayer perceptrons to reconstruct the direction and energy of the particle initiating the air shower and also to discriminate between gamma rays and hadrons. The performance of this algorithm is evaluated and compared to other existing reconstruction algorithms. Furthermore results of first applications of the algorithm to measured data are shown.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Observations of the FSRQ 3C 279 during the flaring state of 2017 and 2018 with H.E.S.S

    astro-ph.HE 2019-08 conditional novelty 6.0 of 10

    H.E.S.S. detected 3C 279 at very high energies during 2017 and 2018 flares, including a January 2018 VHE flare with little simultaneous GeV activity and a multi-day June 2018 coverage of a GeV flare decay.

  2. Observations of blazar PKS 2023-07 in flaring state with HESS and Fermi-LAT in 2016-2017 and constraints on an intrinsic cut-off

    astro-ph.HE 2019-08 conditional novelty 5.0 of 10

    H.E.S.S. non-detections of the z=1.388 blazar PKS 2023-07 during flares, together with Fermi-LAT spectra, imply an intrinsic cutoff below about 35-128 GeV or absorption in the broad line region.

  3. Unidentified Fermi Objects in the view of H.E.S.S. -- Possible Dark Matter Clumps

    astro-ph.HE 2019-09 conditional novelty 4.0 of 10

    New H.E.S.S. upper limits on four unidentified Fermi sources, combined with Fermi-LAT spectra, imply that if these are dark matter clumps, the dark matter mass must be below approximately 0.4 TeV.

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