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TY - CONF AU - Trubnikov, G.V. AU - Bakhareva, T.A. AU - Bakinowskaya, A.A. AU - Baturitski, M.A. AU - Butenko, A.V. AU - Demyanov, S.E. AU - Emelianov, N. AU - Gusarova, M. AU - Karpovich, V.A. AU - Kulevoy, T. AU - Kurayev, A.A. AU - Maksimenko, S.A. AU - Marysheva, A.A. AU - Matbeenko, V.V. AU - Matsievskiy, S.V. AU - Petrakovsky, V.S. AU - Pobol, I.L. AU - Pokrovsky, A.I. AU - Polozov, S.M. AU - Rak, A.O. AU - Rodionova, V.N. AU - Samoshin, A.V. AU - Shparla, D.A. AU - Sidorin, A.O. AU - Sobenin, N.P. AU - Surkov, D.V. AU - Syresin, E. AU - Taletskiy, K.V. AU - Toporkov, S.E. AU - Yurevich, S.V. AU - Zaleski, V.G. AU - Zvyagintsev, V. ED - Schaa, Volker RW ED - Arduini, Gianluigi ED - Pranke, Juliana ED - Seidel, Mike ED - Lindroos, Mats TI - Status of R&D on New Superconducting Injector Linac for Nuclotron-NICA J2 - Proc. of IPAC2017, Copenhagen, Denmark, 14â19 May, 2017 C1 - Copenhagen, Denmark T2 - International Particle Accelerator Conference T3 - 8 LA - english AB - The new collaboration of JINR, NRNU MEPhI, INP BSU, PTI NASB, BSUIR and SPMRC NASB starts in 2015 the project of linac-injector design in 2015. The goal of new linac is to accelerate protons up to 25 MeV (and up to 50 MeV at the second stage) and light ions to ~7.5 MeV/u for Nuclotron-NICA injection. Current results of the linac general design and development, beam dynamics simulations, SC cavities design and SRF technology development are presented in this report. PB - JACoW CP - Geneva, Switzerland SP - 3282 EP - 3285 KW - linac KW - proton KW - ion KW - simulation KW - injection DA - 2017/05 PY - 2017 SN - 978-3-95450-182-3 DO - 10.18429/JACoW-IPAC2017-WEPVA014 UR - http://jacow.org/ipac2017/papers/wepva014.pdf ER -