TALK KEYWORD INDEX
This page contains an index consisting of author-provided keywords.
| 2 | |
| 2 MW coaxial-cavity gyrotrons | |
| 2D Radar Image | |
| 3 | |
| 300 GHz | |
| 3D printing | |
| 3D-chirality | |
| 5 | |
| 5G | |
| 5G and beyond | |
| 6 | |
| 6G | |
| 6G antennas | |
| 6G wireless | |
| A | |
| a priori uncertainty | |
| Abrikosov vortex | |
| absorption | |
| absorption of microwave | |
| Absorption Rate | |
| accelerating metal-plate lens | |
| acetamide | |
| active antennas | |
| active integrated antenna | |
| active substance | |
| adaptation | |
| additional electric pump field | |
| additional layers | |
| aerospace and electronic systems | |
| AGU coder | |
| Aharonov-Bohm effect | |
| Amination | |
| an electronic switching circuit | |
| analog beamforming | |
| analytical method | |
| analytical regularization method | |
| angular frequency dependences | |
| Anisotropic | |
| anomalous dispersion | |
| Antenna | |
| antenna array | |
| Antenna Arrays | |
| antenna design | |
| antenna diagrams | |
| Antenna matching | |
| Antenna theory | |
| anti-resonant frequency | |
| aperture coupling element | |
| aperture eigenoscillations | |
| Array antenna | |
| artificial dielectrics | |
| Artificial human phantom | |
| artificial intelligence | |
| artificial neural network | |
| artificial optical activity | |
| asymptotic method | |
| asymptotic solution | |
| Atmospheric gravity waves | |
| attenuation | |
| autoregressive process | |
| azimuthal slot | |
| B | |
| backward wave | |
| backward wave oscillator | |
| band gap | |
| band-pass filter | |
| Band-Stop Filter | |
| bandpass filter | |
| bandwidth | |
| basis functions (BF) | |
| Bell Telephone Laboratories | |
| Bessel beams | |
| biconical cavity resonator | |
| bifurcation | |
| bilayer objects | |
| binary and ternary claddings | |
| biodegradable | |
| bioeffect | |
| brightness temperature | |
| Broadband power transfer | |
| broadening of the laser beam cross section | |
| Brominated carbon fibers | |
| bulk-surface waves | |
| C | |
| calculation methods | |
| canalization | |
| capillary waves | |
| carbonyl iron | |
| cassegrain antenna | |
| cavities | |
| CFAR | |
| Chair's Welcome | |
| channel | |
| characteristic impedance | |
| charge-neutrality breaking | |
| Chebyshev | |
| Cherenkov effect | |
| Cherenkov VED | |
| chipless | |
| Choi-Williams distribution | |
| circular dielectric cylinder | |
| circular polarization | |
| circular waveguide | |
| clinotron | |
| clutter | |
| CMOS | |
| coaxial filter | |
| coaxial-cavity | |
| cobalt | |
| coherent polarimetry | |
| cold plasma | |
| collective Thomson Scattering diagnostic | |
| Communication systems | |
| complex cavity | |
| complex frequencies | |
| complex permittivity | |
| complex shape object | |
| computational data | |
| computational electromagnetics | |
| Conformal Antenna | |
| conformation of molecules | |
| continuous wave (CW) gyrotrons | |
| contrast | |
| Convergence | |
| Convolutional Neural Networks | |
| cooperative demining robots | |
| Coordinate system transformation | |
| coplanar | |
| corner reflector | |
| correlated noise | |
| correlation integral | |
| corrugated cavity | |
| corrugated horn antenna | |
| counting filter | |
| coupled waves | |
| crescent shape | |
| critical frequencies | |
| crossing angle | |
| CubeSat | |
| cubically polarizable medium | |
| current density | |
| current distribution | |
| cylindrical finite array | |
| D | |
| Data Acquisition Board | |
| data processing | |
| data transmission | |
| DCT | |
| Detection | |
| detection range | |
| detector | |
| dielectric antennas | |
| Dielectric laser accelerator | |
| dielectric layers in a waveguide | |
| dielectric resonator | |
| dielectric rod | |
| dielectric scatterer | |
| dielectric sphere | |
| diffraction | |
| diffraction radiation | |
| digital quadrature demodulator | |
| dihedral symmetry | |
| diocotron effect | |
| diode | |
| diodes with a Schottky barrier | |
| dipole | |
| directive pattern | |
| directivity diagram | |
| disc cracks | |
| discrete Fourier transforming | |
| discrete tomography | |
| disk | |
| disk resonator | |
| dispenser cathode | |
| dispersion | |
| dispersion analysis | |
| dispersion diagrams | |
| dispersive materials | |
| distance measuring equipment (DME) | |
| Distributed oscillatory system | |
| domain wall mobility | |
| Doppler spectra | |
| double frequency | |
| double grating | |
| DRFM jamming | |
| dynamic nuclear polarization | |
| dynamic range | |
| dynamic stresses | |
| E | |
| eccentric | |
| edge | |
| effective area | |
| Effective Medium Theory | |
| efficiency | |
| eigen fields | |
| eigen values | |
| eigen waves | |
| eigen-oscillations | |
| eigenfield | |
| eigenfrequencies | |
| Eigenfunction | |
| eigenmodes | |
| eigenoscillations | |
| eigenvalue | |
| eigenwaves | |
| elastodynamic scattering | |
| electrochemical etching | |
| Electromagnetic (EM) field | |
| Electromagnetic dosimetry | |
| electromagnetic energy compression | |
| electromagnetic fields | |
| Electromagnetic radiation | |
| electromagnetic scattering | |
| electromagnetic wave scattering | |
| electron accelerator | |
| electron beam | |
| electron cyclotron heating and current drive (ECH&CD) | |
| electron transfer | |
| Electronic Defence Waveform design | |
| electronic surveillance | |
| Electronically Tuneable Filter | |
| electrons density plasma | |
| electrostatic | |
| ELF – VLF radiowaves | |
| EM potential | |
| EMFs | |
| emote sensing of the Earth’s surface | |
| Endoscopy | |
| energy efficiency | |
| energy stability | |
| environment | |
| error estimate | |
| EuMA | |
| European initiatives | |
| European initiatives EMMC EMCC and AMI2030 | |
| Evolutionary Equation Method | |
| expert system | |
| explosive objects | |
| F | |
| facet | |
| Fano resonance | |
| far infrared FT-IR spectroscopy | |
| fast electromagnetic wave | |
| FDTD method | |
| feedhorn | |
| ferrite | |
| Ferrite antenna | |
| ferromagnetic nanostructures | |
| ferromagnetic resonance | |
| FFT | |
| field spatial distribution | |
| field theory | |
| field-forming system | |
| Filter Synthesis | |
| FINEMETAL | |
| finite element method | |
| finite magnetophotonic crystal | |
| flat lenses | |
| flexible antenna | |
| Floquet theorem | |
| Floquet-Bloch waves | |
| foam | |
| foaming ratio | |
| focusing radiating system | |
| Four beam radiation | |
| frequency hopping spread spectrum | |
| frequency properties | |
| frequency response | |
| Fully Convolutional Network | |
| Fuzzy logic | |
| G | |
| gain | |
| GaInN | |
| gallium indium nitride | |
| gap source model | |
| gate | |
| gaussian beam | |
| Gaussian laser pulse | |
| Gaussian pulse | |
| Generalized Cauchy problem | |
| Geometrical Optics | |
| glide symmetrical holey structures | |
| Global navigation satellite systems (GNSS) | |
| GLONASS | |
| GPS | |
| graded-gap semiconductor | |
| graphene disk | |
| graphene layer | |
| graphene patches | |
| gratings | |
| groove | |
| ground penetrating radar | |
| guide system | |
| Gunn diode | |
| gyrotron | |
| gyrotrons | |
| H | |
| half-mode | |
| half-plane | |
| half-wave resonance | |
| harmonics of the main signal | |
| heating | |
| heatsink antenna | |
| helicopters systems | |
| Helmholtz potentials | |
| Heterodyne Filter | |
| heterojunction | |
| high impedance coil | |
| High temperature superconductor | |
| high-order rotating modes | |
| high-temperature superconductors | |
| higher symmetries | |
| history of microwaves | |
| holes | |
| Honey Bee | |
| horizontal electrical dipole | |
| hot carriers | |
| hybrid bulk-surface wave | |
| hydrolysis reaction | |
| hydrometeor | |
| hyperbolic dispersion | |
| hyperbolic metasurfaces | |
| hyperbolic reflector | |
| hysteresis | |
| I | |
| I-V-characteristic | |
| IEEE | |
| IEEE MTT-S | |
| IEEE UkrMW-2022 | |
| image decoding | |
| image denoising | |
| Image quality assessment | |
| image quality enhancement | |
| Imaging | |
| impedance monopole | |
| impulse electromagnetic wave | |
| inclined lens focusing | |
| incoherent scatter | |
| indium nitride | |
| indium phosphide | |
| information protection | |
| information secrecy | |
| inhomogeneity | |
| inhomogeneous film | |
| Inhomogeneous human model | |
| inhomogeneous media | |
| input impedance | |
| instruments | |
| integral equations | |
| interferometer | |
| interstellar medium | |
| interstellar molecule | |
| intervalley transfer of electrons | |
| inverse problem | |
| ionized carbon | |
| ionosphere | |
| ionospheric plasma motion | |
| IoT | |
| ISAR | |
| ISM Band | |
| ITER and DEMO tokamaks | |
| iteration algorithm | |
| Iterative Processes | |
| iterative processing | |
| J | |
| J. Bardeen | |
| jamming | |
| JSC “Khartron” | |
| K | |
| kd-tree | |
| Ku-band | |
| L | |
| landmine detection | |
| Laplace transform | |
| large amplitude motion | |
| laser cavity | |
| laser generation | |
| laser-cutting technology | |
| LC Tank Resonator | |
| leaky waves | |
| Leaky-wave antenna (LWA) | |
| leech | |
| lens antennas | |
| lens horn antenna | |
| lenses | |
| Leontovich | |
| LFM pulse | |
| LiDAR | |
| lightning location | |
| lightweight aircraft | |
| likelihood ratio | |
| Linear transform | |
| lithium-zinc ferrite | |
| load resistance | |
| localized waves | |
| London free energy | |
| long wave approximation | |
| loop | |
| losses in the mode of a high-power signal | |
| losses in the mode of a low-power signal | |
| lossy compression | |
| low cost | |
| low GHz frequencies radiation | |
| Low Profile | |
| low-profile | |
| lower ionosphere diagnostic | |
| LTE | |
| M | |
| M. Yangel | |
| magnetic domains | |
| magnetic field | |
| magnetic flux quantum | |
| magnetic induction | |
| magnetic resonance | |
| magnetic susceptibility | |
| magnetic video pulse | |
| magnetron | |
| MAS | |
| matching | |
| material development | |
| mathematical modelling | |
| mathematical modelling methods | |
| mathematical simulation | |
| Matrix algebra | |
| Maxwell equations | |
| meaconer | |
| mechanical vibration | |
| megawatt-class | |
| membrane function | |
| metal detector | |
| metallic layers | |
| metamaterial | |
| metamaterials | |
| metasurface | |
| metasurfaces | |
| meteorological radar | |
| method analytical regularization | |
| method of integral equations | |
| method of moments (MoM) | |
| micropowders | |
| microstrip | |
| microstrip-line power divider | |
| microwave | |
| microwave compressors | |
| microwave dielectrometry method | |
| microwave engineering | |
| microwave multiport multimeter | |
| microwave oscillations | |
| microwave spectrometer | |
| microwave spectrum | |
| Microwave videos | |
| microwaves | |
| Mikaelian lens | |
| millimeter antennas | |
| millimeter range | |
| millimeter wave spectrum | |
| millimeter waves | |
| millimeter-wave communication | |
| millimetre waves | |
| MIMO antenna | |
| MLFMA | |
| mm-wave | |
| mm-wave Antenna | |
| MMW | |
| modal logic | |
| mode conversion | |
| mode generator setup | |
| Mode Matching Technique | |
| modeconverter | |
| moderate focusing | |
| modes | |
| modified Bragg waveguide | |
| monopole antenna | |
| moving objects | |
| moving target indication | |
| multi-frequency (multi-purpose) gyrotrons | |
| multi-sensor data fusion | |
| multifold Riemann surface | |
| multifunctional antenna | |
| multimode regime | |
| multiple targets | |
| multispectral image | |
| mutual coupling | |
| N | |
| NADH | |
| nanocomposites | |
| nanodisks | |
| nanomaterials | |
| nanostructures | |
| Near-field communications | |
| neuron | |
| no-reference quality metric | |
| Noise Radar | |
| non-destructive testing | |
| non-homogeneity | |
| non-uniform profile | |
| nonlinear magnetoelectric effect | |
| nonlinear Maxwell's equations | |
| Nonlinear Spectral Three-Parameter Problem Recovering a Surface | |
| nonlinear transmission line | |
| nonreciprocity | |
| nonuniform grating | |
| nonuniform transmission line resonator | |
| normal metal | |
| Nuclear fusion energy | |
| nuclear magnetic resonance | |
| nuclear spin echo | |
| null field approach | |
| Numerical Approach | |
| numerical simulation | |
| O | |
| object determination | |
| oblate | |
| oblique incidence | |
| oblique-incidence sounding of the ionosphere | |
| On-Body | |
| one-periodic bar gratings | |
| open resonator | |
| operator method | |
| optimization | |
| Optimization techniques | |
| orbital side-looking radar | |
| orthogonal polynomials | |
| orthotropic plates | |
| oxide cathode | |
| P | |
| p-i-n-diodes | |
| parabolic reflector | |
| Partial differential | |
| passive cooling | |
| passive-active radar | |
| patch antenna | |
| pattern characteristic | |
| PCB Antenna Designer | |
| PEC cylinder | |
| Periodic chip structure | |
| periodic interface | |
| periodic structures | |
| permittivity | |
| phase distribution | |
| phase shift | |
| phase velocity | |
| phased-array antennas | |
| phaseshifter | |
| phonon scattering | |
| photon-magnon coupling | |
| photonic topological transition | |
| PIFA | |
| pinning | |
| Pivdenne SDO | |
| planar dielectric waveguides | |
| planar waveguide | |
| planar-chiral iris | |
| plane junction | |
| plane-wave | |
| plasma diagnostics | |
| plasma drift velocity | |
| plasma gun | |
| plasmonics | |
| plate | |
| PLL stabilization and injection locking of gyrotrons | |
| polarisers | |
| polarizability | |
| polarization | |
| polarization converter | |
| polarizer | |
| poles of attenuation | |
| porous surfaces | |
| potential distribution | |
| power | |
| pre-fractal modelling | |
| predicate calculus | |
| Program detector | |
| prolate | |
| Prony method | |
| propagation | |
| pulse compression receiver | |
| pulse jamming | |
| pulse position modulation | |
| Pulse radar | |
| Pyramid Scene Parsing (PSP) | |
| Python | |
| Q | |
| Q-Factor | |
| Quantum Illumination | |
| Quantum Radar | |
| quasi-optical output coupler | |
| quasi-optical systems | |
| quasioptical conditions | |
| quasioptics | |
| R | |
| radar | |
| radar cross section | |
| radar decoy | |
| Radar observations | |
| radar signal envelope | |
| radar system | |
| radar systems | |
| radiation efficiency | |
| radiation pattern | |
| Radiation pattern synthesis | |
| Radiation-absorbents | |
| radio monitoring | |
| radio recombination lines | |
| radio telescope | |
| radio-emitting object | |
| radiofrequency coil | |
| radiotelescope | |
| radiothermal image | |
| rain fading | |
| rain intensity | |
| rainfall rate estimation | |
| random sequence | |
| RCS | |
| real time monitoring | |
| reconfigurable binomial weighted phased array | |
| rectangular screen | |
| rectangular waveguide | |
| reflectarray | |
| reflection | |
| reflection and transmission coefficients | |
| reflector antenna | |
| regularization | |
| regularized Laplace inversion formula | |
| relative standard deviation | |
| remote detection | |
| remote monitoring of the surrounding space | |
| remote sensing | |
| remote sensing of precipitation | |
| requirements | |
| resonance | |
| resonance frequency | |
| resonant frequencies | |
| resonant frequency | |
| resonator | |
| resonators | |
| RF signals | |
| RFID | |
| Rhodamine | |
| robust algorithm | |
| rocket and space industry of Ukraine | |
| Rod arrays | |
| RP | |
| S | |
| S. Konyukhov | |
| S11 coefficient | |
| SAR | |
| satellite communications | |
| satellite navigation | |
| satellite-to-ground links | |
| scanning radiometer | |
| scattering | |
| scattering characteristics | |
| selective rational interpolation | |
| selectively doped semiconductor structure | |
| self similar fractal sets | |
| self-complementary metasurface | |
| Self-healing | |
| Semantic segmentation | |
| semiconductor nanotubes | |
| sensitivity | |
| Separation of Variables Method | |
| SH-wave | |
| shadow contactless ultrasonic nondestructive method | |
| sharp focusing | |
| sheet electron beam | |
| SHF | |
| shielded loop | |
| Shooting and Bouncing Rays | |
| short powerful pulses | |
| short wave approximation | |
| signal amplitude | |
| signal model | |
| signal of opportunity | |
| signal phase | |
| signal processing | |
| signal selection | |
| single-position phase system | |
| single-pulse echo | |
| sky | |
| slot inhomogeneity | |
| slotted waveguide antenna | |
| Smith-Purcell effect | |
| Smith-Purcell radiation | |
| solar eclipse | |
| sources | |
| space charge waves | |
| space-charge wave | |
| spacecraft | |
| spatial correlation properties | |
| spatial harmonic | |
| spatial selection | |
| Specific | |
| Specific absorption rate (SAR) | |
| spectral analyzer | |
| spectral lines | |
| spectral problems | |
| Spectrogram | |
| spectroscopy | |
| spectrum | |
| spectrum of oscillation | |
| spectrum spreading | |
| sphere | |
| spheroidal | |
| spin waves | |
| spiral resonator | |
| spoof surface plasmon-polaritons | |
| spoofing | |
| spring type interface conditions | |
| square waveguide polarizer | |
| starting current | |
| state recognition | |
| statistical analysis | |
| Steady-state oscillations | |
| Step Frequency Noise SAR | |
| stepped septum | |
| stepwise frequency tunable gyrotrons | |
| strip | |
| sub-Doppler spectral resolution | |
| sub-terahertz | |
| sub-Terahertz (THz) | |
| substrate integrated waveguide | |
| subsurface radar | |
| superheterodyne free electron laser | |
| surface conductivity | |
| surface gyrotropic wave | |
| surface impedance | |
| surface resistance | |
| surface waves | |
| synthesis | |
| T | |
| T-Matrix method | |
| Technical details | |
| temperature | |
| TeraFET | |
| Terahertz | |
| terahertz imaging | |
| terahertz laser | |
| the method of moments | |
| thermionic electron emission | |
| thin compliant layer | |
| thin film dielectric substrate | |
| thin interphase inclusion | |
| thin refractive cylinder | |
| three-wave parametric interactions | |
| threshold | |
| throughput | |
| THz detectors | |
| THz emitter | |
| THz imaging | |
| THz radiation | |
| THz range | |
| THz time-domain spectroscopy | |
| THz time-domain spectroscopy application | |
| Time Domain Expansion | |
| time-frequency analysis | |
| timer signal | |
| timing | |
| tissue | |
| topological magnonics | |
| transfer matrix method | |
| transistor | |
| transmission coefficient | |
| transmission spectra | |
| trigonometric model | |
| tripwire detection | |
| true-time-delay lens | |
| Tunable | |
| tunable component | |
| Tuneable Active Filter | |
| turbulence | |
| tweek-atmospherics | |
| twisted photonics | |
| two dimensional(2D) layer | |
| two-band superconductors | |
| two-dimensional BIEs | |
| two-dimensional scattering | |
| two-layer medium | |
| U | |
| U-Net | |
| UAV | |
| UAV image | |
| Ukraine | |
| ultra-wideband (UWB) signal | |
| ultra-wideband GPR signal | |
| unauthorized access | |
| uniaxial | |
| unmanned aerial vehicle | |
| unusual true eigen waves | |
| UWB | |
| V | |
| V. Lashkarev | |
| V. Sergeiev | |
| V2X | |
| variable surface impedance | |
| Vavilov-Cherenkov radiation | |
| Vavilov–Cherenkov effect | |
| velocity control | |
| very-high-frequency gyrotrons | |
| VHF oscillations | |
| virtual cathode | |
| visual quality | |
| Voigt configuration | |
| voltage sensitivity | |
| voltage standing-wave ratio (VSWR) | |
| W | |
| W. Brattain | |
| W. Shockley | |
| water distillate | |
| Wave patterns | |
| wave scattering | |
| waveguide | |
| waveguide component | |
| waveguide phase shifter | |
| wavelike form | |
| wearable device | |
| weather radar | |
| weighting factors | |
| Welcome | |
| Welcome Address | |
| wideband lenses | |
| wideband radar echo | |
| Wire media | |
| Women in Engineering | |
| X | |
| X-band | |
| Y | |
| Y-type hexaferrite | |
| Young Professionals | |
| yttrium iron garnet | |
| Yuzvinski chain | |