Search Results - "Kuzovkov, V.N."

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  1. 1

    Kinetics of the electronic center annealing in Al2O3 crystals by Kuzovkov, V.N., Kotomin, E.A., Popov, A.I.

    Published in Journal of nuclear materials (15-04-2018)
    “…The experimental annealing kinetics of the primary electronic F, F+ centers and dimer F2 centers observed in Al2O3 produced under neutron irradiation were…”
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    Journal Article
  2. 2

    Kinetics of F center annealing and colloid formation in Al2O3 by Kotomin, E.A., Kuzovkov, V.N., Popov, A.I., Vila, R.

    “…The diffusion-controlled kinetics of the F center annealing in Al2O3 (sapphire, corundum) is simulated theoretically for the two regimes: after neutron…”
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  3. 3

    Detection of hidden oxygen interstitials in neutron-irradiated corundum crystals by Lushchik, A., Seeman, V., Shablonin, E., Vasil'chenko, E., Kuzovkov, V.N., Kotomin, E.A., Popov, A.I.

    Published in Optical materials. X (01-05-2022)
    “…An α-Al2O3 (corundum) possesses unique optical, electrical and mechanical properties, demonstrates high tolerance to heavy irradiation and, in particular, is…”
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    Journal Article
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    Comparison of the F-type center thermal annealing in heavy-ion and neutron irradiated Al2O3 single crystals by Popov, A.I., Lushchik, A., Shablonin, E., Vasil'chenko, E., Kotomin, E.A., Moskina, A.M., Kuzovkov, V.N.

    “…The optical absorption and thermally stimulated luminescence of Al2O3 (sapphire) single crystals irradiated with swift heavy ions (SHI) 238U with energy…”
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    Journal Article
  7. 7

    Kinetics of dimer F2 type center annealing in MgF2 crystals by Kuzovkov, V.N., Kotomin, E.A., Popov, A.I.

    “…In this paper, we analyzed experimental annealing kinetics of the primary electronic F centers and dimer F2 centers observed in MgF2 at higher radiation doses…”
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  8. 8

    Radiation-induced defects in sapphire single crystals irradiated by a pulsed ion beam by Ananchenko, D.V., Nikiforov, S.V., Kuzovkov, V.N., Popov, A.I., Ramazanova, G.R., Batalov, R.I., Bayazitov, R.M., Novikov, H.A.

    “…The luminescence and thermal stability of defects formed in α-Al2O3 single crystals after powerful (300 keV) pulsed irradiation with C+/H+ ion beam were…”
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  9. 9

    Peculiarities of the diffusion-controlled radiation defect accumulation kinetics under high fluencies by Kuzovkov, V.N., Kotomin, E.A., Popov, A.I., Vila, R.

    “…Theory is developed for kinetics of the diffusion-controlled radiation defect accumulation in crystalline solids under high fluencies taking into account…”
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    Journal Article
  10. 10

    Kinetic Monte Carlo modeling of Y2O3 nano-cluster formation in radiation resistant matrices by Zvejnieks, G., Anspoks, A., Kotomin, E.A., Kuzovkov, V.N.

    “…[Display omitted] As known, Y2O3 nano-clusters considerably increase radiation resistance of reactor construction materials. To model the nano-cluster…”
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    Journal Article
  11. 11

    Thermal annealing of radiation damage produced by swift 132Xe ions in MgO single crystals by Baubekova, G., Akilbekov, A., Kotomin, E.A., Kuzovkov, V.N., Popov, A.I., Shablonin, E., Vasil'chenko, E., Zdorovets, M., Lushchik, A.

    “…The annealing kinetics of the electron-type F+ and F color centers in highly pure MgO single crystals irradiated by 0.23-GeV 132Xe ions with fluences covering…”
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    Journal Article
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    Void lattice formation in electron irradiated CaF2: Statistical analysis of experimental data and cellular automata simulations by Zvejnieks, G., Merzlyakov, P., Kuzovkov, V.N., Kotomin, E.A.

    “…Calcium fluoride (CaF2) is an important optical material widely used in both microlithography and deep UV windows. It is known that under certain conditions…”
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  14. 14

    Anderson localization problem: An exact solution for 2-D anisotropic systems by Kuzovkov, V.N., von Niessen, W.

    Published in Physica A (01-04-2007)
    “…Our previous results [V.N. Kuzovkov, W. von Niessen, V. Kashcheyevs, O. Hein, J. Phys. Condens. Matter 14 (2002) 13777] dealing with the analytical solution of…”
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    Journal Article
  15. 15

    Void superlattice formation in electron irradiated CaF 2: Theoretical analysis by Kuzovkov, V.N., Kotomin, E.A., Merzlyakov, P., Zvejnieks, G., Li, K.D., Ding, T.H., Wang, L.M.

    “…CaF 2 is widely adopted as deep-UV window material and thin film optical coating. The void superlattice was observed experimentally under electron irradiation…”
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  16. 16

    Random walk approach to the analytic solution of random systems with multiplicative noise—The Anderson localization problem by Kuzovkov, V.N., von Niessen, W.

    Published in Physica A (15-09-2006)
    “…We discuss here in detail a new analytical random walk approach to calculating the phase diagram for spatially extended systems with multiplicative noise. We…”
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  17. 17

    Void superlattice formation in electron irradiated CaF2: Theoretical analysis by Kuzovkov, V.N., Kotomin, E.A., Merzlyakov, P., Zvejnieks, G., Li, K.D., Ding, T.H., Wang, L.M.

    “…CaF2 is widely adopted as deep-UV window material and thin film optical coating. The void superlattice was observed experimentally under electron irradiation…”
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    Journal Article
  18. 18

    Modelling of phase transitions and reaction at CO adsorption on oxygen precovered Pd(1 1 1) by Zvejnieks, G., Kuzovkov, V.N., Petrauskas, V., Tornau, E.E.

    Published in Applied surface science (30-05-2006)
    “…Using the interaction parameters up to the third neighbors and activated form of O and CO diffusion and their reaction, the model has been proposed for…”
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    Journal Article Conference Proceeding
  19. 19

    Theory of diffusion-controlled colloid formation in irradiated solids by Kuzovkov, V.N., Kotomin, E.A.

    Published in Solid state ionics (01-11-1997)
    “…The kinetics of diffusion-controlled aggregation of Frenkel defects (interstitial atoms and vacancies) under irradiation of solids is studied on a microscopic…”
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    Modeling of primary defect aggregation in tracks of swift heavy ions in alkali halides by Kashcheyevs, V, Kotomin, E.A, Kuzovkov, V.N

    Published in Surface & coatings technology (01-09-2002)
    “…Dynamic Monte Carlo simulations of primary defect aggregation in tracks of swift heavy ions in alkali halides have been performed. The study was motivated by…”
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    Journal Article