Prof. Guennadi Kouzaev
Professor specializing in Microwave Techniques and Virus Genomics at NTNU
location_on Norway
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Professional Summary
With an extensive academic and research background, this scholar has been a Professor at the Department of Electronics Systems, NTNU since 2005, focusing on microwave-assisted chemistry, graphene waveguide designs for terahertz applications, and the theoretical modeling of ultra-cold atoms. Prior to this role, they have held positions as a Research Associate at McMaster University and as a Senior IC Design Engineer at Gennum Corp in Canada. Their diverse expertise spans quantum integrations and viral RNA sequence analysis to topological EM problems and ultra-fast circuit design. The academic tenure also includes significant contributions at the Moscow State Institute of Electronics and Mathematics, where they developed pioneering 3D microwave circuits and supervised numerous advanced research projects. Their sabbatical engagements at various international institutions further underscore their commitment to advancing microwave technology and virus genomics research.
Work History
Res. Assoc. Acad.
McMaster University (Hamilton, Canada)
2001 - 2005
- Developed fast analytical EM models of planar and 3D components for advanced multi-ten-gigabit motherboards: via-holes, lossy microstrip transmission lines, and low-loss substrate integrated waveguides (up to 100 GHz), shorted-patch antennas, and miniaturized antennas for medical applications. Measurements and full-wave simulations verified the developed models.
Professor
Department of Electronics Systems, NTNU
2005 - Present
- Researched the theory and experimental verification of several novel miniature coaxial heaters for microwave (MW)-assisted chemistry, including glass-metal and rotating liquid-thin-film designs. Took part in molecular simulation of dipole dynamics in the MW field in open space, near conducting surfaces, and inside nano coaxial reactors. Proposed predicate and variable predicate logic processor designs and managed two projects on their FPGA verification. Proposed two designs of graphene H-waveguides for terahertz lasing and performed their electromagnetic analytical and numerical simulations. Research focused on the analysis of viral RNA sequences and their mapping for visual and mathematical characterization. Proposed a conception of seamless simulation and design of quantum and electronic integrations by commercial and modified circuit simulators. Derived new compact Hertz-quantum self-consistent equations for prospective CAD tools of quantum/EM integrations. Did research on theoretical modeling of traps and guides of ultra-cold atoms by DC and MW fields, solving the linear and nonlinear Schrödinger equations. Initiated a project and took part in the study of the Anderson effect in random optical traps for ultra-cold atoms. Proposed a new type of signal with topologically modulated space-time EM fields (3D vector-manifold signals for terabit optical multichannel communication). Did research on the topological theory of boundary value problems. Supervised several PhD and Postdoc projects.
Sabbatical Research Professor
MaCH-3DP Corp. (Burlington, Ontario, Canada)
2026 - 2026
- Doing research on virus genomics
Sabbatical Research Professor
MaCH-3DP Corp. (Burlington, Ontario, Canada)
2025 - 2025
- Did research on numerical modeling of microwave reactors, wrote and submitted one journal paper and two preprints
Sabbatical Research Professor
Ankara University (Turkey)
2024 - 2024
- Did research on numerical modeling of microwave heating of reference liquids in coaxial waveguide reactors
Sabbatical Research Professor
MaCH-3DP Corp. (Burlington, Ontario, Canada)
2020 - 2020
- Did research on the possible non-thermal nature of accelerating chemical reactions in the MW field. Developed semi-analytical models of graphene microstrip transmission lines. Proposed novel waveguides for terahertz lasing initiated by light. Performed analytical modeling
Sabbatical Research Professor
MaCH-3DP Corp. (Burlington, Ontario, Canada)
2019 - 2019
- Did research on the possible non-thermal nature of accelerating chemical reactions in the MW field. Developed semi-analytical models of graphene microstrip transmission lines. Proposed novel waveguides for terahertz lasing initiated by light. Performed analytical modeling
Sabbatical Research Professor
European Laboratory of Nonlinear Sciences (Florence, Italy)
2013 - 2013
- Did theoretical research on catching ultra-cold atoms by random light-trapping potentials based on the Anderson effect
Senior IC Design Engineer
Gennum Corp. (Burlington, Canada)
2000 - 2001
- Designed CMOS and bipolar multigigabit IC equalizers and broadband PCBs for them. Evaluated and characterized the designed high-speed subsystems and components. Wrote a code for joint time-frequency analysis of distorted picosecond signals.
Professor, Assoc. Professor, Senior Research Assoc.
Moscow State Institute of Electronics and Mathematics (Technical University)
1989 - 2000
- Developed a topological theory of the boundary EM problems. Proposed a new type of space-time topologically modulated EM signals and hardware for their processing: MW passive gates for radars, sub-picosecond passive switches, multivalued and predicate gates, and reconfigurable logic components for quantum logic modeling. Proposed a conception of a new reconfigurable pseudo-holographic architecture for a ULSI processor. Took part in a pioneering project on developing the first 3D MW integrated circuits for airspace applications and was responsible for the electromagnetics and analytical/numerical modeling of 3D integrated components and subsystems. Supervised projects supported by the Russia Fund for Basic Research, the Russian Ministry of Science, and national and private institutions. Gave lectures on electromagnetism, MW and high-speed electronics, MW optics, and information security. Supervised the Engineer and PhD students.
Department Head (Part-Time), Project Head (Part-Time)
Research Inst. of Advanced Technology, Russian Academy of Natural Sciences
1994 - 1997
- Managed projects on highly sensitive techniques and hardware for receiving and processing weak optical and MW human-body signals. Managed the development of highly sensitive MW and millimeter-wave radiometers and radiometric imagers of weak human-body radiation. I researched numerical techniques for the radiometer time-domain calibration using methods of stochastic dynamics.
Research Associate
Russia Science Research Institute of Space Device Engineering
1984 - 1989
- Developed, tested, and tuned MW miniature planar and three-dimensional integrated components. Developed several FORTRAN codes for computations of planar and multilayered transmission lines, directional couplers, filters, etc. Simulated and studied multilevel slot transmission lines and their discontinuities using integral equations and variational techniques. Studied spin-wave physics in ferrites. Developed a new analytical model of a distributed spin-wave amplifier. Invented a 3D ferrite circulator and multilayered filters. Implemented the developed circuits and software into the aerospace industry.
No education information available
Published Works
Directional coupler
PatentAsymmetrical slot transmission line
PatentSlot transmission line
PatentTopological switches for picosecond digital signal processing (in Russian)
Journal ArticleCirculator
PatentGeometriodynamics of Nipah virus evolution
OtherATG walks in virus genomics
Conference PaperApplications of Advanced Electromagnetics. Microwave Components and Systems, 2nd Edition
BookDNA walks in virus genomics
Journal ArticleVisual and quantitative analyses of virus genomic sequences using a metric-based algorithm
Journal ArticleThe geometry of ATG-walks of the Omicron SARS CoV-2 virus RNAs
OtherThe geometry of ATG-walks of the Omicron SARS CoV-2 virus RNAs
OtherGeometrical Study of Virus RNA Sequences
OtherFrequency dependence of microwave-assisted electron-transfer chemical reactions
Journal ArticleNonlinear dynamics of dipoles in microwave electric field of a nanocoaxial tubular reactor
Journal ArticleEffects of microwave electric fields on the translational diffusion of dipolar molecules in surface potential: A simulation study
Journal ArticlePropagation control of edge Hall-effect modes in 2D electron waveguides with random confining potential
Conference PaperPreface of the “Symposium on Numerical Methods and Models in Applied Quantum Mechanics and Nanoelectronics”
Conference PaperEigenmodal analysis of Anderson localization: Applications to photonic lattices and Bose-Einstein condensates
Journal ArticleA simulation study of microwave field effects on 3D orthorhombic lattice of rotating dipoles: short-range potential energy variation
Journal ArticleSimulation of quantum and EM-quantum components using the available circuit simulators
Conference PaperNonlinear and stochastic dynamics of dipoles underlying the thermal and non-thermal effects of RF-electric fields in polar dielectrics
Conference PaperElectronic control of edge modes in integer-Hall-effect 2D electron waveguides
OtherControlled localized eigenmodes in pseudo-random multilayer electron waveguides
Journal ArticleComputer-aided design of hybrid quantum-classical integrations
Conference PaperCircuit modelling of Schrödinger equations for CAD of hybrid electronic-quantum integrations
Conference PaperCircuit models for Josephson effects in weakly-coupled Bose-Einstein condensates and in superconductor junctions
Conference PaperOn the time evolution of the separatrix stochastic layer of a harmonically-perturbed nonlinear pendulum
Conference PaperStochastic dynamics of an electric dipole in the external electric fields: a perturbed nonlinear pendulum approach
Journal ArticleHertz vectors and the electromagnetic-quantum equations
Journal ArticleSimulation of quantum effects by the Agilent ADS
OtherCalculation of linear and nonlinear Schrödinger equations by the equivalent network approach and envelope technique
Journal ArticleCo-design of quantum and electronic integrations by available circuit simulators
Conference PaperRelaxation mechanism of microwave heating of near-critical polar gases
Journal ArticleControlling cold matter by the RF and DC fields
Book ChapterQuasi-synaptic effect to control the cold matter transfer (invited paper)
Journal Article3D multicell designs for registering of Bose-Einstein condensate clouds
Journal ArticleStochasticity in nonlinear pendulum motion of dipoles in electric field
Conference PaperInter-wire transfer of cold dressed atoms
Journal ArticleRF controllable Ioffe-Pritchard trap for cold dressed atoms
Journal ArticleNumerical simulations of the Ioffe-Pritchard trap for cold dressed atoms
Journal ArticleQuantum synapse for cold atoms
Conference PaperNumerical simulations of the Ioffe-Pritchard trap for cold dressed atoms
Journal ArticleQuantum synapse for cold atoms
Conference PaperTowards miniature multi-bore coaxial reactors for microwave-assisted parallel liquid heating: Basis experimental research
Journal ArticleCoaxial open-ended T-junction reactor for microwave-assisted heating of liquids and semi-liquid pastes
Technical ReportParallel microwave-assisted heating in multi-bore coaxial reactors
Technical ReportMicrowave-assisted heating in thin-film liquid spinning coaxial reactors for enhanced chemical processes
Book ChapterMicrowave-assisted liquid heating in spinning coaxial reactors
Journal ArticleThin-film rotating coaxial reactor for microwave-assisted rapid Chemistry
Technical ReportMiniature glass-metal coaxial waveguide reactors for microwave-assisted liquid heating
Journal ArticleGlass-metal coaxial-waveguide reactors for on-demand microwave-assisted chemistry
Technical ReportMicrowave coaxial reactors for on-demand chemistry
Technical ReportTerahertz rectangular waveguides with inserted graphene films biased by light and their quasi-linear electromagnetic modeling
Journal ArticleCorrection to: Terahertz rectangular waveguides with inserted graphene films biased by light and their quasi-linear electromagnetic modeling
Journal ArticleGraphene H-waveguide for terahertz lasing applications: electromagnetic quasi-linear theory
Journal ArticleElectrodynamic and probabilistic calculation of performances of THz devices based on periodic multilayer graphene-dielectric structures
Conference PaperPhysics-based analytical engineering models of graphene micro- and nanostrip lines
Journal ArticleStudy of microwave heating of reference liquids in a coaxial waveguide reactor using the experimental, semi-analytical, and numerical means
Journal ArticleModels of water, methanol, and ethanol and their applications in the design of miniature microwave heating reactors
Journal ArticleNumerical analysis of tunable parametric terahertz devices based on graphene nanostructures using the projection method and autonomous blocks
Conference PaperSimulation and study of chaotic dynamics in a stadium-shaped optically-large resonator
Conference PaperRigorous modelling of microwave devices on magnetic opal nanocomposites by the method of multimode autonomous blocks
Conference PaperApplications of Advanced Electromagnetics: Components and Systems
BookTopology, signaling, and computing
AbstractTransmission of H10 mode through the magnetic nanowire-based 3D structures in the waveguide at short microwaves
Conference PaperPropagation of short microwaves and their nonlinear interactions with 3D arrays of magnetically functionalized carbon nanotubes
Conference PaperTransmission lines and passive components
Book ChapterElectromagnetic model of differential substrate integrated waveguide
Conference PaperElectromagnetic model of differential substrate integrated waveguide
Conference PaperBasics of topological electromagnetics and its applications, Plenary lecture abstract
Conference PaperA method of autonomous blocks partially filled by nonlinear gyromagnetic media for nanoelectromagnetic applications
Conference PaperTopological theory of electromagnetic boundary problems. Plenary lecture abstract
Conference PaperDecomposition approach to nonlinear diffraction problems of nanoelectromagnetics and nanophotonics using autonomous blocks with Floquet channels
Conference PaperCavity models of planar components grounded by via-holes and their experimental verification
Journal ArticleAn approximate parallel-plate waveguide model of a lossy multilayered microstrip line
Journal ArticleA parallel-plate waveguide model of lossy microstrip line
Journal ArticleThe influence of eccentricity on the frequency limitations of circular-pad grounding vias
Journal ArticleCircular-pad via model based on cavity field analysis
Journal ArticleThe significant achievements of the MSIEM’s scientists: microwave components for 3D ICs
Magazine ArticleBroadband modal filters (In Russian)
Conference PaperMicrowave volume-metrical monolithic integrated circuits
Conference PaperA narrow band-pass microwave filter
Journal ArticleA miniature filter of the UHF (In Russian)
Journal ArticleThree-dimensional microwave functional units of a new age for radio-technical complexes (In Russian)
Technical ReportComponents and functional devices for microwave three-dimensional integrated circuits
Book ChapterPhysical principles of the modeling of three-dimensional microwave and extremely high-frequency integrated circuits
Journal ArticleTopological models of the natural modes in coupled corner transmission lines
Journal ArticleDirectional couplers based on transmission lines with corners
Journal ArticleTechnology for three-dimensional microwave integrated circuits (In Russian)
Journal ArticleConvergence of the solutions in the topological electrodynamics (In Russian)
Conference PaperThe similarity principle for simulation of three-dimensional microwave integrated circuits (In Russian)
Conference PaperPhysics and the field topology of 3D-microwave circuits
Journal ArticleAnalysis and synthesis of microwave 3D-ICs
Journal ArticleTopological approach for eigenmodal problems (In Russian)
Conference PaperTopology and physics of electromagnetic fields in three-dimensional components of microwave integrated circuits (In Russian)
Conference PaperMathematical fundamentals of topological electrodynamics and the three-dimensional microwave integrated circuits’ simulation (In Russian)
Book ChapterTopological analysis of the dominant mode field of an antipodal slot transmission line (In Russian)
Conference PaperA field approach to the design of SHF 3D ICs (In Russian)
Journal ArticlePredicate and pseudoquantum gates for amplitude-spatially modulated electromagnetic signals
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Member since
2026
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Location
Norway
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Available
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Hourly rate
10.00$
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