Biography

Prof. Guennadi A. Kouzaev

Department of Electronic Systems

Norwegian University of Science and Technology, Norway

Professor in Microwave and Terahertz Techniques


Email: [email protected]


Qualifications

1998 Dr.Sci.(Habil.) in Microwave Techniques & Computer Eng., Moscow State University of Electronics and Mathematics

1983 Ph.D., RadioPhysics, including Quantum RadioPhysics,  Kotelnikov's Institute of Radioengineering and Electronics, USSR Academy of Sciences


Publications (Selected)

  1. Kouzaev, G. (2025). Parallel microwave-assisted heating in multi-bore coaxial reactors. IEEE TechRxiv Preprint.
  2. Kouzaev, G. (2025). Microwave-assisted heating in thin-film liquid spinning coaxial reactors for enhanced chemical processes. In: Chemical and Materials Sciences: Developments and Innovations, Vol. 9, 62-85.
  3. Belinsky, A., & Kouzaev, G. (2024). DNA walks in virus genomics. JP Journal of Biostatistics, Vol. 24, 251-286.
  4. Kouzaev, G. (2024). Microwave-assisted heating in a novel thin film-liquid spinning coaxial reactor. AIMS Electrical Engineering, Vol. 8, 488-507.
  5. Kouzaev, G (2024). Applications of Advanced Electromagnetics. Microwave Components and Systems, 2nd Edition, Springer.
  6. Kouzaev, G., & Kapranov, S. (2023). Microwave miniature coaxial reactors for on-demand material synthesis. IEEE TechRxiv Preprint.
  7. Sharma, G., & Kouzaev, G. (2023). Miniature glass-metal coaxial waveguide reactors for microwave-assisted liquid heating. Vol. 7, 100-120.
  8. Kostadinov, A., & Kouzaev, G. (2022). A novel processor for artificial intelligence acceleration. WSEAS Transaction on Circuits and Signals. Vol. 21, 125-141.
  9. Kouzaev, G. (2022). Glass-metal coaxial-waveguide reactors for on-demand microwave-assisted chemistry. IEEE TechRxiv Preprint.
  10. Kouzaev, G. A. (2021). Terahertz rectangular waveguides with inserted graphene films biased by light and their quasi-linear electromagnetic modeling. Journal of Computational Electronics, Vol. 20, 169-177.
  11. Kouzaev, G. A. (2020). Graphene H-waveguide for terahertz lasing applications: electromagnetic quasi-linear theory. Nanomaterials. Vol. 10, 2415.
  12. Kouzaev, G. A. (2020). Frequency dependence of microwave-assisted electron-transfer chemical reactions. Molecular Physics, Vol. 118, e1685691.
  13. Lerer, A. M., Kouzaev, G. A., & Makeeva, G. S. (2020, March). Electrodynamic and Probabilistic Calculation of Performances of THz devices Based on Periodic Multilayer Graphene-Dielectric Structures. In 2020 Moscow Workshop on Electronic and Networking Technologies (MWENT) (pp. 1-4). IEEE.
  14. Kapranov, S. V., & Kouzaev, G. A. (2019). Study of microwave heating of reference liquids in a coaxial waveguide reactor using the experimental, semi-analytical and numerical means. International Journal of Thermal Sciences. Vol. 140, 505-520.
  15. Kapranov, S. V., & Kouzaev, G. A. (2019). Nonlinear dynamics of dipoles in microwave electric field of a nanocoaxial tubular reactor. Molecular Physics, Vol. 117, 489-506.
  16. Kapranov, S. V., & Kouzaev, G. A. (2018). Effects of microwave electric fields on the translational diffusion of dipolar molecules in surface potential: a simulation study. Surface Science, Vol. 667, 66-78.
  17. Kapranov, S. V., & Kouzaev, G. A. (2017). Models of water, methanol, and ethanol and their applications in the design of miniature microwave heating reactors. International Journal of Thermal Sciences, Vol. 122, 53-73.


Profile Details

WoS ResearcherID: AAW-2821-2021

https://www.ntnu.edu/employees/guennadi.kouzaev

https://scholar.google.com/citations?user=G4xlx4AAAAAJ&hl=no

https://orcid.org/0000-0002-1633-2961

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