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  • Micropattern gaseous photon...
    Alexeev, M.; Birsa, R.; Bradamante, F.; Bressan, A.; Chiosso, M.; Ciliberti, P.; Croci, G.; Colantoni, M.L.; Dalla Torre, S.; Duarte Pinto, S.; Denisov, O.; Diaz, V.; Duic, V.; Ferrero, A.; Finger, M.; Finger Jr, M.; Fischer, H.; Giacomini, G.; Giorgi, M.; Gobbo, B.; Heinsius, F.H.; Herrmann, F.; Königsmann, K.; Kramer, D.; Lauser, L.; Levorato, S.; Maggiora, A.; Martin, A.; Menon, G.; Mutter, A.; Nerling, F.; Panzieri, D.; Pesaro, G.; Polak, J.; Rocco, E.; Ropeleswki, L.; Sauli, F.; Sbrizzai, G.; Schiavon, P.; Schill, C.; Schopferer, S.; Slunecka, M.; Sozzi, F.; Steiger, L.; Sulc, M.; Takekawa, S.; Tessarotto, F.; Wollny, H.

    Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 11/2010, Volume: 623, Issue: 1
    Journal Article

    We are developing a detector of single photons for application in Cherenkov imaging counters, based on the use of a multilayer architecture of THGEM electron multipliers coupled to a solid state CsI photocathode. The main goals of our project are ion feedback suppression down to a few per cent level, large gain, fast response, good time resolution, insensitivity to magnetic field and large detector size. We report about the project status and perspectives.