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  • Barrel calorimeter of the C...
    Anisenkov, A.V.; Aulchenko, V.M.; Barkov, L.M.; Bashtovoy, N.S.; Bondar, A.E.; Epifanov, D.A.; Epshteyn, L.B.; Erofeev, A.L.; Grebenuk, A.A.; Ignatov, F.V.; Karpov, S.V.; Khazin, B.I.; Kovalenko, O.A.; Kozyrev, A.N.; Kuzmin, A.S.; Logashenko, I.B.; Mikhailov, K.Yu; Pestov, Yu.N.; Pivovarov, S.G.; Popov, A.S.; Razuvaev, G.P.; Ruban, A.A.; Ryzhenenkov, A.E.; Shebalin, V.E.; Shemyakin, D.N.; Shwartz, B.A.; Solodov, E.P.; Titov, V.M.; Talyshev, A.A.; Yudin, Yu.V.

    Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 12/2013, Letnik: 732
    Journal Article

    Since 2010 the CMD-3 detector has been collecting data at the e+e− collider VEPP-2000 at Budker Institute of Nuclear Physics. CMD-3 is a general purpose detector designed to study e+e− annihilation into hadrons in the wide energy range s=0.3–2GeV. The CMD-3 barrel electromagnetic calorimeter consists of two subsystems: closest to the beam pipe is the Liquid Xenon calorimeter and the outer one is based on CsI scintillation crystals. The design of the calorimeter and its current performance are presented.