Перегляд за автором "Demidov, N.V."

Сортувати за: Порядок: Результатів:

  • Akchurin, Yu.I.; Boriskin, V.N.; Borgkovsky, Yu.V.; Gurin, V.A.; Demidov, N.V.; Ivahnenko, M.V.; Savchenko, A.N.; Levandovsky, S.P.; Orlova, E.I.; Popenko, V.A.; Momot, V.A.; Tatanov, V.I.; Tsebenko, G.M. (Вопросы атомной науки и техники, 2001)
    The high-power technological electron linac KUT-20 was developed at the Science Research Complex “Accelerator” of NSC KIPT. The linac consists of two 1.2 m length accelerating structures with a variable geometry and an ...
  • Boriskin, V.N.; Akchurin, Yu.I.; Bahmetev, N.N.; Borgkovsky, Yu.I.; Gurin, V.A.; Demidov, N.V.; Ivahnenko, M.V.; Savchenko, A.N.; Levandovsky, S.P.; Orlova, E.I.; Popenko, V.A.; Momot, V.A.; Tatanov, V.I.; Tsebenko, G.M. (Вопросы атомной науки и техники, 1999)
    In recent years in the Science Research Complex "Accelerator" in NSC KIPT the power current technological electron linacs are developed and put into operation. Their energy varies from 8 MeV to 30 MeV, the pulse current ...
  • Akchurin, Yu.I.; Boriskin, V.N.; Gurin, V.A.; Demidov, N.V.; Yeran, L.V.; Ivahnenko, M.V.; Nescheret, S.F.; Savchenko, A.N.; Sarvilov, A.A.; Tatanov, V.I.; Tsebenko, G.N. (Вопросы атомной науки и техники, 2006)
    The reconstruction of a two-section electron LU-40 linac was finished in 2004. The accelerator consists of two accelerating sections and an injector, the latter includes a diode electron gun, a klystron type buncher and ...
  • Antipov, K.I.; Ayzatsky, M.I.; Akchurin, Yu.I.; Boriskin, V.N.; Beloglasov, V.I.; Biller, E.Z.; Demidov, N.V.; Dikiy, N.P.; Dovbnya, A.N.; Dovbush, L.S.; Gurin, V.A.; Karasyov, S.P.; Kushnir, V.A.; Kosmin, V.A.; Myakushko, L.K.; Mitrochenko, V.V.; Nikitina, T.F.; Opanasenko, A.N.; Pugachev, G.D.; Repikhov, O.A.; Reprintsev, L.V.; Reshetnyak, N.G.; Popenko, V.A.; Seleznev, V.V.; Shramenko, B.I.; Shendrik, V.A.; Stepin, D.L.; Tarasov, G.E.; Tolstoy, A.E.; Tur, Yu.D.; Uvarov, V.L.; Zadvorny, A.S.; Zakutin, V.V.; Zlunitsyn, E.S.; Zykov, A.I. (Вопросы атомной науки и техники, 2001)
    A review is given about electron linacs of NSC KIPT and their some applications for research of radiation effects in reactor materials, channeling, plasma-beam interactions, geology (gamma-activation analysis of ore samples), ...
  • Antipov, K.I.; Ayzatsky, M.I.; Akchurin, Yu.I.; Gurin, V.A.; Boriskin, V.N.; Beloglasov, V.I.; Biller, E.Z.; Demidov, N.V.; Dovbnya, A.N.; Dronov, R.N.; Khodak, I.V.; Kosoy, A.I.; Kushnir, V.A.; Momot, V.A.; Myakushko, L.K.; Mytrochenko, V.V.; Nikitina, T.F.; Opanasenko, A.N.; Perezhogin, S.A.; Pugachev, G.D.; Repikhov, O.A.; Reprintzev, L.V.; Shendrik, V.A.; Stepin, D.L.; Tarasov, G.E.; Tur, Yu.D.; Zhiglo, V.F. (Вопросы атомной науки и техники, 2004)
    The S-band electron linac has been designed at NSC KIPT to cover an energy range from 30 to 100 MeV. The linac consists of the injector based on evanescent oscillations and the two four-meter long piecewise homogeneous ...
  • Boriskin, V.N.; Demidov, N.V.; Ivahnenko, A.V.; Levandovsky, S.P.; Momot, V.A.; Tarasov, G.E.; Shelepko, S.V. (Вопросы атомной науки и техники, 2006)
    The temperature control system of the accelerator provides thermal stabilization of the two accelerating sections and the injector. The system consists of 7 temperature-sensitive elements, up to 8 transducers of water ...