Перегляд за автором "Sokolovskyi, I.O."

Сортувати за: Порядок: Результатів:

  • Sachenko, A.V.; Kostylyov, V.P.; Gerasymenko, M.V.; Korkishko, R.M.; Kulish, M.R.; Slipchenko, M.I.; Sokolovskyi, I.O.; Chernenko, V.V. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2016)
    The theoretical analysis of photovoltaic conversion efficiency of highly effective silicon solar cells (SC) has been performed for n-type and p-type bases. Considered here is the case when the Shockley–Read–Hall recombination ...
  • Kryuchenko, Yu.V.; Sachenko, A.V.; Bobyl, A.V.; Kostylyov, V.P.; Romanets, P.N.; Sokolovskyi, I.O.; Shkrebti, A.I.; Terukov, E.I. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2012)
    We develop a detailed formalism to photoconversion efficiency η of hydrogenated amorphous silicon ( a-Si:H ) based solar cells with a contact grid. This efficient three-dimensional model allows firstly optimization of the ...
  • Sachenko, A.V.; Kulish, M.R.; Sokolovskyi, I.O.; Kostylyov, V.P. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2013)
    In this work, features of solar cells of lateral type were analyzed. The authors offered a design of a monolithic compact solar module with cells electrically connected in series and with a dispersion element (holographic ...
  • Kulish, M.R.; Kostylyov, V.P.; Sachenko, A.V.; Sokolovskyi, I.O.; Khomenko, D.V.; Shkrebtii, A.I. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2016)
    We review a status of the research on conversion of solar energy into electricity by using the systems that split the solar spectrum with a set of luminescent concentrators. Influence of the luminophore choice (rare-earth ...
  • Sachenko, A.V.; Sokolovskyi, I.O.; Kazakevitch, A.; Shkrebtii, A.I.; Gaspari, F. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2007)
    An analytical formalism to optimize the photoconversion efficiency η of hydrogenated amorphous silicon-based (a-Si:H) solar cells has been developed. This model allows firstly the optimization of a p⁺ -i-n sandwich in ...
  • Sachenko, A.V.; Kostylyov, V.P.; Korkishko, R.M.; Kulish, M.R.; Sokolovskyi, I.O.; Vlasiuk, V.M.; Khomenko, D.V. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2015)
    Characteristics of basic silicon solar cells are experimentally researched and theoretically modeled using photons of incandescent lamps as sunlight simulator. It was established that increasing temperature evokes significant ...
  • Sachenko, A.V.; Sokolovskyi, I.O. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2008)
    Analytical expressions for the maximum obtainable photoconversion efficiency of quantum-well solar cells (QWSCs) under AM0 conditions are given. The modeling of the photoconversion efficiency of QWSCs under AM1.5 ...
  • Kulish, M.R.; Litvinova, V.M.; Malysh, M.I.; Sokolovskyi, I.O. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2016)
    It has been shown that changes in temperature of uniaxial single crystal are accompanied by changes in the polarization plane angular position and the light intensity that subsequently passes through the polarizer, uniaxial ...
  • Sachenko, A.V.; Kostylyov, V.P.; Vlasiuk, V.M.; Sokolovskyi, I.O.; Evstigneev, M.A. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2016)
    By comparison of the experimental dependence of bulk lifetime in silicon on the doping and excitation levels with theoretical calculations, it has been shown that a new recombination channel becomes operative when ...
  • Gorban, A.P.; Kostylyov, V.P.; Litovchenko, V.G.; Sachenko, A.V.; Serba, A.A.; Sokolovskyi, I.O.; Chernenko, V.V. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2010)
    Theoretical analysis and experimental research of Si solar cells (SC) with interdigitated back side contacts (BSC) photovoltaic parameters and photoconversion efficiency at low light level have been done in presence of ...