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Symbolic Investigation of the Spectral Characteristics of Guided Modes in Smoothly Irregular Waveguides solving a spectral problem the eigenfunctions of which describe guided modes of smoothly irregular

Single-mode propagation of adiabatic guided mode in a smooth transition between planar waveguides to the numerical solution of the problem of single-mode propagation of guided modes in a smoothly irregular

Simulation of guided modes (eigenmodes) and synthesis of a thin-film generalised waveguide Luneburg lens in the zero-order vector approximationPropagation of a guided mode (eigenmode) through an integrated optical generalised waveguide

Возбуждение волноводов и резонаторов электронными потоками into irregular, dif- fraction and wave scattering take place in the area of foreign sources. Therefore, the well

THE DERIVATION OF THE DISPERSION EQUATIONS OF ADIABATIC WAVEGUIDE MODES IN THE THIN-FILM WAVEGUIDE LUNEBURG LENS IN THE FORM OF NON-LINEAR PARTIAL DIFFERENTIAL EQUATION OF THE FIRST ORDER of the irregular waveguide layer. The dispersion equation is represented in the form of non-linear partial

Generation of Artificial Ionospheric Irregularities in the Midlatitude Ionosphere Modified by High-Power High-Frequency X-Mode Radio Waves-mode radio waves. It is shown that small-scale (decameter) irregularities are not generated

Peculiarities of Excitation of Large-Scale Plasma Density Irregularities During Modification of the Ionospheric F2 Region by High-Power HF Radio Waves facility. It is shown that at the altitude of the pump-wave reflection, these irregularities are most

Peculiarities of excitation of large-scale plasma density irregularities during modification of the ionospheric F2 region by high-power HF radio waves facility. It is shown that at the altitude of the pump-wave reflection, these irregularities are most

Generation of the Super Small-Scale Artificial Ionospheric Irregularities in the Ionosphere Pumped by High-Power HF Radio Waves for the pump wave. The intensity of such irregularities and typical times of their development and decay

Generation of Artificial Ionospheric Irregularities in the Midlatitude Ionosphere Modified by High-Power High-Frequency X-Mode Radio Waves-mode radio waves. It is shown that small-scale (decameter) irregularities are not generated

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