Перегляд за автором "Denysenko, I.B."

Сортувати за: Порядок: Результатів:

  • Denysenko, I.B.; Mikikian, M.; Azarenkov, N.A. (Problems of Atomic Science and Technology, 2022)
    The dust charge distribution function (DCDF) in an argon plasma afterglow is obtained by solving numerically the master equation describing dust discharging as a one-step stochastic process. The calculated DCDFs are compared ...
  • Ivko, S.V.; Denysenko, I.B.; Smolyakov, A.I.; Azarenkov, N.A. (2010)
    We study the dispersion properties and transmission of a p-polarized electro-magnetic wave in a two-layer plasma structure in presence of an external magnetic field. The conditions for resonance transmission are found. The ...
  • Denysenko, I.B.; Azarenkov, N.A.; Ivko, S.; Burmaka, G.; Glazkov, A. (Вопросы атомной науки и техники, 2016)
    Analytical expressions describing electron energy probability functions (EEPFs) in glow and afterglow dusty plasmas are obtained from the homogeneous Boltzmann equation for electrons. At large energies in a glow dusty plasma, ...
  • Denysenko, I.B.; Stefanović, I.; Azarenkov, N.A.; Burmaka, G.P. (Вопросы атомной науки и техники, 2014)
    A theoretical model for an argon/dusty plasma afterglow in presence of nano-sized dust particles with large density is developed. According to the model, in the plasma afterglow the electrons are generated in metastable ...
  • Denysenko, I.B.; Ivko, S.; Azarenkov, N.A.; Burmaka, G. (Вопросы атомной науки и техники, 2020)
    It is studied how dissociation and ionization of acetylene molecules in their collisions with argon atoms in excited states Ar* may affect properties of argon-acetylene plasma with growing inside of plasma volume dust ...
  • Denysenko, I.B.; Ivko, S.; Azarenkov, N.A.; Burmaka, G. (Вопросы атомной науки и техники, 2018)
    Analytical expressions for the electron energy probability function (EEPF) in an argon plasma afterglow with large dust density, which are obtained from the homogeneous Boltzmann equation for different steady-state ...
  • Burmaka, G.P.; Denysenko, I.B.; Azarenkov, N.A. (Вопросы атомной науки и техники, 2012)
    A surface diffusion model, describing the growth of forest of single-walled carbon nanotubes in plasmaenhanced chemical vapor deposition, is developed. Using this model, the growth rates of the nanotubes and the growth ...
  • Burmaka, G.P.; Denysenko, I.B.; Azarenkov, N.A. (Вопросы атомной науки и техники, 2015)
    The growth of forest of single-walled carbon nanotubes (SWCNTs) in plasma-enhanced chemical vapor deposition (PECVD) is studied using a deposition model. The inhomogeneity in deposition of neutrals from plasma on the SWCNTs, ...