Search Results - "Migunov, D. M."

  • Showing 1 - 8 results of 8
Refine Results
  1. 1

    Studying the Transparency of Graphene for Low-Energy Electrons by Il’ichev, E. A., Kuleshov, A. E., Migunov, D. M., Nabiev, R. M., Petrukhin, G. N., Rychkov, G. S., Teverovskaya, E. G., Khaustov, V. O.

    Published in Technical physics letters (01-09-2018)
    “…The transparency of graphene membranes for electrons with energies in the range from 5 to 50 eV has been studied with a view to using graphene as an electrode…”
    Get full text
    Journal Article
  2. 2

    Fabrication and Study of Parameters and Properties of Nanostructured Membranes for MEMS Devices by Dyuzhev, N. A., Gusev, E. E., Gryazneva, T. A., Dedkova, A. A., Dronova, D. A., Kireev, V. Yu, Kirilenko, E. P., Migunov, D. M., Novikov, D. V., Patyukov, N. N., Presnukhina, A. A., Bakun, A. D., Ermakov, D. S.

    Published in Nanotechnologies in Russia (01-07-2017)
    “…The technology of forming blanks of nanostructured membranes for MEMS devices based on alternating Si 3 N 4 /SiO 2 layers with a nanometer thickness has been…”
    Get full text
    Journal Article
  3. 3

    Experimental determination of the energy dependence of electron inelastic mean free path in silicon oxide and silicon nitride by Garmash, V. I., Djuzhev, N. A., Kirilenko, E. P., Makhiboroda, M. A., Migunov, D. M.

    “…The energy dependence of the electron inelastic mean free path, λ( E ), in silicon oxide and silicon nitride is experimentally determined via Auger electron…”
    Get full text
    Journal Article
  4. 4

    Investigating the formation of nanostructured emission mediums for high-current radio-frequency electronics by Bespalov, V. A., Il’ichev, E. A., Kirilenko, E. P., Kozlitin, A. I., Kuleshov, A. E., Migunov, D. M., Nabiev, R. M., Petrukhin, G. N., Rychkov, G. S., Sakharov, O. A., Trifonov, A. I.

    Published in Russian microelectronics (01-12-2015)
    “…The results of investigating nanostructured mediums are presented; the mediums are formed in carbon-based and semiconductor materials by the methods enabling…”
    Get full text
    Journal Article
  5. 5

    Field-emission diodes based on semiconductor—polycrystalline diamond heterojunctions by Bespalov, V. A., Il’ichev, E. A., Kuleshov, A. E., Migunov, D. M., Nabiev, R. M., Petrukhin, G. N., Rychkov, G. S., Sakharov, O. A., Shcherbakhin, Yu. V.

    Published in Technical physics (01-10-2014)
    “…A complex of electrophysical and technological studies of solid-state field-emission diodes is carried out. Emission comes from an array of nanometer objects…”
    Get full text
    Journal Article
  6. 6

    Solid-state field-emission diode by Bespalov, V. A., Il’ichev, E. A., Kuleshov, A. E., Migunov, D. M., Nabiev, R. M., Petrukhin, G. N., Rychkov, G. S., Shcherbakhin, Yu. V.

    Published in Technical physics letters (01-02-2013)
    “…We present the results of experimental investigations of the characteristics of solid-state field-emission diodes, which were created for the first time using…”
    Get full text
    Journal Article
  7. 7

    Catalytic growth of nanostructures from carbonaceous substrates: Properties and model notions by Il’ichev, É. A., Inkin, V. N., Migunov, D. M., Petrukhin, G. N., Poltoratskiĭ, É. A., Rychkov, G. S., Shkodin, D. V.

    Published in Technical physics letters (01-02-2010)
    “…The results of experimental investigations of carbon nanostructures grown direct from carbonaceous substrates are presented for the first time. A physical…”
    Get full text
    Journal Article
  8. 8