Feasibility of an atmospheric Cherenkov telescope to veto air showers for neutrino astronomy
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[1] J. Auffenberg,et al. Design study of an air-Cherenkov telescope for harsh environments with efficient air-shower detection at 100 TeV , 2015, 1511.01680.
[2] E. Dietz-Laursonn,et al. G4SiPM: A novel silicon photomultiplier simulation package for Geant4 , 2015 .
[3] V. Vlachoudis,et al. The FLUKA Code: Developments and Challenges for High Energy and Medical Applications , 2014 .
[4] W. Lustermann,et al. Design and operation of FACT - the first G-APD Cherenkov telescope , 2013, 1304.1710.
[5] T. Gaisser,et al. Vetoing atmospheric neutrinos in a high energy neutrino telescope , 2008, 0812.4308.
[6] K. Bernlohr,et al. Simulation of Imaging Atmospheric Cherenkov Telescopes with CORSIKA and sim_telarray , 2008, 0808.2253.
[7] P. O. Hulth,et al. First year performance of the IceCube neutrino telescope , 2006 .
[8] A. Ferrari,et al. FLUKA: A Multi-Particle Transport Code , 2005 .
[9] W. Hofmann,et al. Study of the photon flux from the night sky at La Palma and Namibia, in the wavelength region relevant for imaging atmospheric Cherenkov telescopes , 2001, astro-ph/0107120.
[10] J. Knapp,et al. CORSIKA: A Monte Carlo code to simulate extensive air showers , 1998 .