Search Results - "Shwartz, L."

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  1. 1

    Effect of Temperature on the Morphology of Planar GaAs Nanowires (Simulation) by Spirina, A. A., Shwartz, N. L.

    Published in Semiconductors (Woodbury, N.Y.) (01-02-2020)
    “…The self-catalyzed growth of planar GaAs nanowires is analyzed using the lattice kinetic Monte Carlo model. Vapor–liquid–solid nanowire growth on (111)A and…”
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    Journal Article
  2. 2

    Initial Stages of Planar GaAs Nanowire Growth—Monte Carlo Simulation by Spirina, A. A., Neizvestny, I. G., Shwartz, N. L.

    Published in Semiconductors (Woodbury, N.Y.) (01-12-2019)
    “…The initial stages of planar self-catalyzed GaAs nanowire growth via the vapor-liquid-solid mechanism are considered by a kinetic lattice Monte Carlo model…”
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    Journal Article
  3. 3

    Examination of Self-Catalyzed III–V Nanowire Growth by Monte Carlo Simulation by Nastovjak, A. G., Usenkova, A. G., Shwartz, N. L., Neizvestny, I. G.

    Published in Semiconductors (Woodbury, N.Y.) (01-12-2019)
    “…The main features of self-catalyzed III–V nanowire growth according to the vapor-liquid-solid mechanism were analyzed using Monte Carlo simulation. The…”
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    Journal Article
  4. 4

    Reasons of Crystallite Formation during the Self-Catalyzed GaAs Nanowire Growth by Nastovjak, A. G., Shwartz, N. L., Emelyanov, E. A., Petrushkov, M. O., Vasev, A. V., Putyato, M. A., Preobrazhenskii, V. V.

    Published in Semiconductors (Woodbury, N.Y.) (01-12-2020)
    “…During the self-catalyzed GaAs nanowire growth formation of parasitic GaAs crystallites is observed. The reasons for crystallite formation are explained on the…”
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    Journal Article
  5. 5

    Monte Carlo Simulation of Ga Droplet Movement during the GaAs Langmuir Evaporation by Spirina, A. A., Nastovjak, A. G., Neizvestny, I. G., Shwartz, N. L.

    Published in Semiconductors (Woodbury, N.Y.) (01-12-2018)
    “…A kinetic lattice Monte Carlo model is used to study the Ga droplets self-propelled motion along GaAs(111)A and (111)B surfaces during the initial stage of…”
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    Journal Article
  6. 6

    Monte Carlo Simulation of Alternate Pulsed Epitaxial Growth of GaAs Nanowires by Nastovjak, Alla G., Shterental, David V., Shwartz, Nataliya L.

    Published in physica status solidi (b) (01-11-2022)
    “…The Monte Carlo simulation of a self‐catalyzed GaAs nanowire (NW) growth regime is proposed and realized, where gallium and arsenic are deposited in pulsed…”
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    Journal Article
  7. 7

    Formation of GaAs nanostructures by droplet epitaxy—Monte Carlo simulation by Vasilenko, Maxim A., Neizvestny, Igor G., Shwartz, Nataliya L.

    Published in Computational materials science (01-05-2015)
    “…[Display omitted] •A Monte Carlo model of GaAs nanostructure formation by droplet epitaxy is suggested.•The dependence of GaAs nanostructure morphology on…”
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    Journal Article
  8. 8

    Kinetically driven thermal roughening of semiconductor surfaces: experiment on GaAs and Monte Carlo simulation by Kazantsev, D M, Akhundov, I O, Kozhuhov, A S, Khoroshilov, V S, Shwartz, N L, Alperovich, V L, Latyshev, A V

    Published in Physica scripta (01-03-2023)
    “…Abstract We present the results of GaAs annealing experiments in the conditions near equilibrium, which clarify the reasons of the transition from surface…”
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    Journal Article
  9. 9

    Anisotropy in Ostwald ripening and step-terraced surface formation on GaAs(001): Experiment and Monte Carlo simulation by Kazantsev, D.M., Akhundov, I.O., Shwartz, N.L., Alperovich, V.L., Latyshev, A.V.

    Published in Applied surface science (30-12-2015)
    “…[Display omitted] •GaAs(001) surface smoothing kinetics in equilibrium conditions is simulated.•Fourier and autocorrelation analyses of surface relief are…”
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    Journal Article
  10. 10

    Monte Carlo simulation of GaAs(001) surface smoothing in equilibrium conditions by Kazantsev, D.M., Akhundov, I.O., Karpov, A.N., Shwartz, N.L., Alperovich, V.L., Terekhov, A.S., Latyshev, A.V.

    Published in Applied surface science (01-04-2015)
    “…•Kinetics of GaAs(001) surface smoothing in equilibrium conditions is simulated.•The stages of step-terraced morphology formation are elucidated.•Monatomic…”
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    Journal Article
  11. 11

    Role of Readsorption in the Formation of Vertical AIIIBV Nanowires with Self-Catalytic Growth by Nastovjak, A. G., Usenkova, A. G., Shwartz, N. L., Neizvestny, I. G.

    Published in Russian microelectronics (2020)
    “…Using Monte Carlo simulations, we studied the effect of readsorption on the growth rate and morphology of A III B V nanowires. It is demonstrated that…”
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    Journal Article
  12. 12

    Сoncentric GaAs Nanorings Growth Modelling by Nastovjak, A. G., Neizvestny, I. G., Vasilenko, M. A., Shwartz, N. L.

    Published in Semiconductors (Woodbury, N.Y.) (01-05-2018)
    “…The nanostructures formation process using the droplet epitaxy technique was investigated by Monte Carlo simulation. The simulation was fulfilled for…”
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    Journal Article
  13. 13

    Peculiarities of axial and radial Ge–Si heterojunction formation in nanowires: Monte Carlo simulation by Shwartz, Nataliya L., Nastovjak, Alla G., Neizvestny, Igor G.

    Published in Pure and applied chemistry (27-05-2012)
    “…The process of axial and radial Si–Ge heterostructure formation during nanowire growth by vapor–liquid–solid (VLS) mechanism was studied using Monte Carlo (MC)…”
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    Journal Article
  14. 14

    Silicon monoxide role in silicon nanocluster formation during Si-rich oxide layer annealing – Monte Carlo simulation by Mikhantiev, Eugene A., Neizvestny, Igor G., Usenkov, Stanislav V., Shwartz, Nataliya L.

    Published in Computational materials science (01-07-2014)
    “…•Monte Carlo model of Si-ncs formation during SiOx layer annealing was suggested.•The important role of SiO in the process of Si-ncs formation was…”
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    Journal Article
  15. 15

    Simulation of surface relief effect on ALD process by Neizvestny, I.G., Shwartz, N.L., Yanovitskaja, Z. Sh, Zverev, A.V.

    Published in Computational materials science (01-05-2006)
    “…Using kinetic MC model simulation of ALD process is carried out. Influence of surface substrate relief and sticking center concentration on growth rate of ALD…”
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    Journal Article
  16. 16

    Thermal Smoothing and Roughening of GaAs Surfaces: Experiment and Monte Carlo Simulation by Kazantsev, D. M., Akhundov, I. O., Alperovich, V. L., Shwartz, N. L., Kozhukhov, A. S., Latyshev, A. V.

    Published in Semiconductors (Woodbury, N.Y.) (01-05-2018)
    “…GaAs thermal smoothing at temperatures T ≤ 650°C in the conditions close to equilibrium yields surfaces with atomically smooth terraces separated by steps of…”
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    Journal Article
  17. 17

    Possibilities of Monte Carlo simulation for examination of nanowhisker growth by Nastovjak, Alla G., Neizvestny, Igor G., Shwartz, Nataliya L.

    Published in Pure and applied chemistry (01-11-2010)
    “…The kinetic Monte Carlo (MC) model of nanowhisker (NW) growth is suggested. Two variants of growth are possible in the model—molecular beam epitaxy (MBE) and…”
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    Journal Article
  18. 18

    Monte Carlo simulation of GaAs nanorings formation by droplet epitaxy by Vasilenko, Maxim A., Shwartz, Nataliya L.

    “…Simulation of GaAs nanorings formation by droplet epitaxy was carried out using a kinetic lattice Monte Carlo model. Dependence of nanoring morphology on…”
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    Conference Proceeding
  19. 19

    Influence of Schwoebel barrier and diffusion anisotropy on step density oscillation amplitude during epitaxial growth by Neizvestny, I.G., Shwartz, N.L., Yanovitskaja, Z. Sh

    Published in Computational materials science (01-05-2006)
    “…Speeding up of step density oscillations (SDO) damping on singular surface with Schwoebel barriers was demonstrated by Monte Carlo simulation. Estimation of…”
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    Journal Article
  20. 20

    Workload Migration into Clouds Challenges, Experiences, Opportunities by Ward, C, Aravamudan, N, Bhattacharya, K, Cheng, K, Filepp, R, Kearney, R, Peterson, B, Shwartz, L, Young, C C

    “…The steady drumbeat of Cloud as a disruptive influence for Infrastructure Service Providers (ISP's) and the enablement vehicle for Software As A Service…”
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    Conference Proceeding