Department of Point-contact Spectroscopy

Ukr

Eng

Vitalii Oleksandrovich Horielyi

Candidate of Sciences in Physics and Mathematics (Ph.D.)

Junior Researcher

 

B. Verkin Institute for Low Temperature Physics and Engineering of the National Academy of Sciences of Ukraine

47 Nauky Ave., Kharkiv, 61103, Ukraine

 

 

 

e-mail: horielyi@ilt.kharkov.ua

 

 

Date and place of birth: 1991, Kharkiv, Ukraine.

 

Area of expertise

 

Magneto-electric properties of powder nanocomposites CrO2.

 

 

 

Author and co-author of 8 articles, h-index : 3 (Google Scholar), or 3 (Scopus).

 

  • Key publications

    1. Yu.A. Kolesnichenko, N.V. Dalakova, E.Yu. Beliayev, O. M. Bludov, V.A. Horielyi, O.M. Osmolowskaya and M.G. Osmolowsky. Features of low-temperature tunneling magnetoresistance of pressed chromium dioxide CrO2 nanopowders // Low Temp. Phys. 43, 617 (2017).

    DOI: https://doi.org/10.1063/1.4985216

     

    2. N.V. Dalakova, E.Yu. Beliayev, A.N. Bludov, V.A. Horielyi, O.M. Osmolowskaya and M.G. Osmolowsky. Conductivity of pressed powders of chromium dioxide with spin-dependent electron tunneling: The effect of thickness and composition of dielectric layers // Low Temp. Phys. 45, 1281 (2019).

    DOI: https://doi.org/10.1063/10.0000210

     

    3. E.Yu. Beliayev,    V.A. Horielyi   and   Yu.A. Kolesnichenko.  Interplay   of   hopping   conductivity  and   superconductivity  in  magnetic  superconductor RuSr2(Eu1.5Ce0.5)Cu2O10−δ  // Low Temp. Phys. 46, 584 (2020).

    DOI: https://doi.org/10.1063/10.0001240

     

    4. E.Yu. Beliayev, V.A. Horielyi and Yu.A. Kolesnichenko. Magnetotransport properties of CrO2 powder composites (Review article) // Low Temp. Phys. 47, 355 (2021).

    DOI: https://doi.org/10.1063/10.0004228

     

    5. E.Yu. Beliayev, I.G. Mirzoiev, V.V. Andrievskii, A.V. Terekhov, Yu.A. Kolesnichenko, V.A. Horielyi, and I.A. Chichibaba. Changes in the coercivity fields of magnetoresistance hysteresis loops under the influence of a spin-polarized current flowing through the half-metal CrO2 nanocomposite system // Low Temp. Phys. 48, 545 (2022).

    DOI: https://doi.org/10.1063/10.0011602

 

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