Search Results - "Sharov, V. A"

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  1. 1

    Impact of Silicon Wafer Surface Treatment on the Morphology of GaP Layers Produced by Plasma Enhanced Atomic Layer Deposition by Uvarov, A. V., Sharov, V. A., Kudryashov, D. A., Gudovskikh, A. S.

    Published in Semiconductors (Woodbury, N.Y.) (01-09-2023)
    “…Investigations of atomic-layer deposition of GaP layers on Si substrates with different orientations and with different preliminary surface treatment have been…”
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  2. 2

    Optoelectronic properties of the Sb/III-Sb interface induced by laser photooxidation by Alekseev, P. A., Eliseyev, I. A., Romanov, V. V., Moiseev, K. D., Kunitsyna, E. V., Borodin, B. R., Sharov, V. A., Smirnov, A. N., Davydov, V. Yu

    Published in Applied physics letters (25-12-2023)
    “…Laser photooxidation is used to form a surface antimony layer on p-type GaSb and GaAs0.06Sb0.94. The emerged Sb/III-Sb interface is studied by a combination of…”
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  3. 3

    To the question of the influence of a silanol cover on the protolytic properties of aminopropyl silica gels by Filisteev, O. V., Sharov, A. V.

    Published in Chimica Techno Acta (30-12-2020)
    “…The paper proposes a model that describes the acid-base properties of amino groups grafted onto the surface, taking into account their interaction with silanol…”
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  4. 4

    Pinning of the Fermi Level on the Oxidized (110) Surfaces of AIII–Sb Semiconductors by Alekseev, P. A., Smirnov, A. N., Sharov, V. A., Borodin, B. R., Kunitsyna, E. V.

    “…A study is performed of the pinning of the Fermi level on oxidized (110) surfaces of AIII–Sb (GaSb, Ga 0.78 In 0.22 As 0.18 Sb 0.82 , and Ga 0.66 Al 0.34 As…”
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    Optimization of Triangular-Profiled Si-Grating Fabrication Technology for EUV and SXR Applications by Mokhov, D. V., Berezovskaya, T. N., Shubina, K. Yu, Pirogov, E. V., Nashchekin, A. V., Sharov, V. A., Goray, L. I.

    Published in Technical physics (01-12-2023)
    “…Anisotropic wet etching of vicinal monocrystalline Si(111)4° wafers was used to obtain blazed gratings that are highly efficient in the soft X-ray (SXR) and…”
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  6. 6

    Blazed Silicon Gratings for Soft X-Ray and Extreme Ultraviolet Radiation: the Effect of Groove Profile Shape and Random Roughness on the Diffraction Efficiency by Goray, L. I., Sharov, V. A., Mokhov, D. V., Berezovskaya, T. N., Shubina, K. Yu, Pirogov, E. V., Dashkov, A. S., Bouravleuv, A. D.

    Published in Technical physics (01-12-2023)
    “…The effect of the groove profile shape and random roughness of the reflecting facet of five silicon diffraction gratings (1°–4° blaze angle, period 0.4, 1.4,…”
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  7. 7

    Blazed Diffraction Gratings on Si—First Results by Goray, L. I., Berezovskaya, T. N., Mokhov, D. V., Sharov, V. A., Shubina, K. Yu, Pirogov, E. V., Dashkov, A. S.

    Published in Technical physics (01-12-2023)
    “…Using direct laser lithography and wet etching of polished vicinal Si(111) wafers, a technology was developed and diffraction gratings 500 grooves/mm with a…”
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  8. 8

    Silicon Echelles for Soft X-Ray and Extreme UV Radiation: Influence of the Camber of the Reflective Facet on the Diffraction Efficiency by Goray, L. I., Berezovskaya, T. N., Mokhov, D. V., Sharov, V. A., Shubina, K. Yu, Pirogov, E. V., Dashkov, A. S.

    “…— The influence of the reflective facet parameters, primarily its camber, on the diffraction efficiency of perfect silicon gratings with blaze angles of 3°–4°…”
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  9. 9

    Measurement of local optomechanical properties of a direct bandgap 2D semiconductor by Benimetskiy, F. A., Sharov, V. A., Alekseev, P. A., Kravtsov, V., Agapev, K. B., Sinev, I. S., Mukhin, I. S., Catanzaro, A., Polozkov, R. G., Alexeev, E. M., Tartakovskii, A. I., Samusev, A. K., Skolnick, M. S., Krizhanovskii, D. N., Shelykh, I. A., Iorsh, I. V.

    Published in APL materials (01-10-2019)
    “…Strain engineering is a powerful tool for tuning physical properties of 2D materials, including monolayer transition metal dichalcogenides (TMDs)—direct…”
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  10. 10

    Simulation Model of a Direct-Current Electric Locomotive with Commutator Traction Motors by Litovchenko, V. V., Nazarov, D. V., Sharov, V. A.

    Published in Russian electrical engineering (2020)
    “…A dc electric locomotive simulation model is considered that makes it possible to study transient and steady processes and may serve as a basis for the notion…”
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    A neutron lens by Kumakhov, M. A, Sharov, V. A

    Published in Nature (London) (04-06-1992)
    “…Smooth hollow glass capillaries can be used to guide neutrons by multiple reflection at grazing angles along the inner walls. It is shown that a concentric…”
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  13. 13

    An Investigation of the Conductive and Ferroelectric Properties of BZT Films by Gushchina, E. V., Borodin, B. R., Sharov, V. A., Osipov, V. V., Pavlov, S. I., Yagovkina, M. A., Dunaevskii, M. S.

    Published in Technical physics (01-12-2020)
    “…Local polarization processes in BaTi 1 – x Zr x O 3 thin films are studied using contact conductive scanning probe microscopy and piezoelectric response…”
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  14. 14

    Methods for controlling a linear asynchronous motor by Litovchenko, V. V., Sharov, V. A., Sidorova, N. N.

    Published in Russian electrical engineering (01-09-2017)
    “…This article describes the case of one of possible method of controlling a linear asynchronous motor (LAM) with a controlled normal component of the force of…”
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  15. 15

    GaAs Wurtzite Nanowires for Hybrid Piezoelectric Solar Cells by Alekseev, P. A., Sharov, V. A., Geydt, P., Dunaevskiy, M. S., Soshnikov, I. P., Reznik, R. R., Lysak, V. V., Lähderanta, E., Cirlin, G. E.

    Published in Semiconductors (Woodbury, N.Y.) (01-05-2018)
    “…The properties of the hybrid energy sources “piezoelectric nanogenerator-solar cell” based on GaAs nanowires with the wurtzite crystal structure were…”
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  16. 16

    An imaging-plate detector for small-angle neutron scattering by Cheng, Y. T., Mildner, D. F. R., Chen-Mayer, H. H., Sharov, V. A., Glinka, C. J.

    Published in Journal of applied crystallography (01-10-2000)
    “…Small‐angle neutron scattering (SANS) measurements have been performed on long‐flight‐path pinhole‐collimation SANS instruments using, as a two‐dimensional…”
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  17. 17

    Neutron Transmission Through Tapered Channels by Mildner, D. F. R., Sharov, V. A., Chen-Mayer, H. H.

    Published in Journal of applied crystallography (01-12-1997)
    “…The transmission of neutrons through a tapered channel is analyzed and the relationships among various parameters such as the distance between reflections and…”
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  18. 18

    Imaging neutron beams with scintillating fiber faceplates by Reeder, P.L, Peurrung, A.J, Richey, W.C, Chen-Mayer, H.H, Sharov, V.A, Fokin, V, Mildner, D.F.R

    “…An imaging system for neutron beams based on scintillating fiber faceplates is described. The scintillating fibers are made from lithium silicate glass doped…”
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  19. 19

    The Number of Reflections for Neutron Transmission through Cylindrical Channels by Mildner, D. F. R., Chen-Mayer, H. H., Sharov, V. A., Fokin, V. S., Reeder, P. L.

    Published in Journal of applied crystallography (01-06-1997)
    “…The fraction of trajectories that have a given number of reflections during the passage of a neutron beam through a long cylindrical channel is determined when…”
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