Radiotehnika i èlektronika
The journal publishes articles on a wide range of theoretical and applied problems of radio electronics, communications and physical electronics, including original articles by leading scientists and specialists working in these fields, as well as materials prepared by major research centers. Subject headings of the journal cover all major areas of radio engineering and electronics, such as electrodynamics, the theory of propagation of radio waves, signal processing, transmission lines, theory and technology of communication, physics of semiconductors and physical processes in electronic devices, the use of radio electronics and radio electronic devices in biology and medicine, microelectronics, nanoelectronics, electron and ion emission, etc.
Media registration certificate: № 0110180 от 04.02.1993
Current Issue



Vol 70, No 1 (2025)
ЭЛЕКТРОДИНАМИКА И РАСПРОСТРАНЕНИЕ РАДИОВОЛН
Beam forming network on the base of non-identically coupled transmission lines
Abstract
Beam forming network as a system of parallel coupled transmission lines with different coupling coefficients is proposed. The beam forming network feeds linear array that in its turn forms radiation pattern with sector shape. An eigenwave problem for an infinite system of infinite transmission lines is solved in frame of coupled wave theory. Also a problem of eigenwave excitation is solved in frame of the same theory. Relations describing wave amplitudes in output plane are obtained. Directivity multiplier of a linear radiating array that excited by the waves in the output plane is considered. The analysis demonstrates that application of new type beam forming network sufficiently improves radiation pattern shape in compare with radiation pattern of the array with beam forming network with identically coupled transmission lines.



АНТЕННО-ФИДЕРНЫЕ СИСТЕМЫ
Over-range polyconical antenna with gradient dielectric lens
Abstract
An omnidirectional in one plane polyconical antenna with a torroidal gradient dielectric anisotropic Mikaelian lens, which is made in the form of a set of parallel coaxial disks made of polystyrene of various thicknesses, is proposed and studied using numerical modeling. As a result of the study and optimization of parameters, it was shown that the optimized polyconical antenna with the lens is matched and provides high efficiency in the 40:1 frequency band. The results of numerical modeling are confirmed by the results of measurements of the manufactured antenna prototype.



ТЕОРИЯ РАДИОТЕХНИЧЕСКИХ ЦЕПЕЙ
Differential equations for a trigger and a single vibrator with external action
Abstract
Numerical solutions of differential equations for a trigger on bipolar transistors in the presence of an external action are obtained. It is shown that the solutions have hysteresis properties. Differential equations for a single vibrator on bipolar transistors are derived and their numerical solutions are found.



ЭЛЕКТРОНИКА СВЧ
Effect of additional dielectric layer and grounded shield on rf characteristics of GaAs microwave monolithic integrated circuit elements in 3D-integrated modules
Abstract
The effect of coating GaAs monolithic integrated circuit with a benzocyclobutene dielectric layer and grounded copper shield is investigated. Using electromagnetic simulation up to 40 GHz, changes of RF characteristics of microstrip and coplanar transmission lines, a Marshand balun, and a bandpass filter due to coating are demonstrated. It is shown that from the performance variation viewpoint, the application of lines is preferred in GaAs monolithic integrated circuits used in 3D-integrated modules with such the coating.



ЭЛЕКТРОННАЯ И ИОННАЯ ОПТИКА



ФИЗИЧЕСКИЕ ПРОЦЕССЫ В ЭЛЕКТРОННЫХ ПРИБОРАХ
Metamagnetic phase transition in Mn5Si3 compound
Abstract
The electrical resistance of the Mn5Si3 compound in magnetic fields up to 2 T at cryogenic temperatures in the range from 35 K to 90 K was studied. The characteristic temperatures of the magnetic phase transition TN1 and TN2 were determined based on the results of measuring the heat capacity at constant pressure CP, magnetization M and specific electrical resistance ρ. It was shown that the behavior of the ρ(T) curves differs depending on the measurement conditions and protocol. Based on the results of measuring the magnetocaloric properties in strong magnetic fields up to 10 T at cryogenic temperatures in the range from 25 to 125 K, both the inverse and conventional magnetocaloric effects were observed. The maximum value of the inverse magnetocaloric effect was ∆Tad = –1.1 K at an initial temperature T0 = 50 K in a magnetic field of 10 T. Conventional magnetocaloric effect with a maximum value of ∆Tad = +0.9 K is observed at T0 = 62.5 K in a field of 10 T. A local exponent of field distribution of entropy n is determined, the value of which n > 2 confirms the type and existence of a first-order phase transition.



Changes in the intrinsic stimulated intense picosecond emission of the AlxGa1–xAs-GaAs-AlxGa1–xAs heterostructure due to the return of those part of the emission that was reflected from the end of the heterostructure to the active region
Abstract
Quenching of the generation of the intrinsic stimulated intense picosecond emission of the AlxGa1–xAs-GaAs-AlxGa1–xAs heterostructure, emerging from its end, has been detected. Quenching occurs when those part of the emission reflected from the end of the heterostructure returns to the active region. This new effect allows decreasing the emission duration by up to 7.5 times.



On the causes of low critical current in twin film high-temperature superconductors
Abstract
The influence of internal local and external demagnetization fields on the critical current density of inter-doublet Josephson weak bonds Jc of high-temperature superconducting YBCO samples is investigated using the oscillation differential technique of local approximation. In the zero-field and zero-field cooling with flux accumulation regimes for samples with different Jc and twin sizes d, the demagnetization fields of samples HD1 and HD2 have been measured. The values of: d; thermodynamic first critical magnetic fields of twins Hic1; twin demagnetization fields HD tr; density of intra-twin effective critical currents Jc ef; critical pinning currents Jc p and shielding Meissner critical currents Jc M are determined. It is shown that at Hic1 fields the twins of large sizes “disintegrate” into a group of smaller twins with close demagnetizing factors. It is found that an increase in Jc M, Jc ef, and a decrease in d lead, on the one hand, to a decrease in Jc due to an increase in the demagnetization field of the sample HD and HD tr created by Jc ef and Jc M, and, on the other hand, to an increase in Jc ef and Jc M due to a decrease in d.



The effect of laser radiation on a junction field-effect transistor
Abstract
Experimental and theoretical studies of the effect of modulated laser radiation on the functioning of a junction field-effect transistor (JFET) as part of an amplifier stage with a common source have been carried out. Patterns in changes in transistor parameters depending on external radiation are determined. It has been established that the cut-off voltage and the specific steepness of the shutter undergo the greatest changes during laser irradiation. It was found that when the transistor structure is irradiated, a photovoltaic effect occurs at the p-n junction of the gate, the concentration of free charge carriers in the semiconductor regions and the channel resistance change. It is shown that the device is sufficiently resistant to laser radiation, which is crucial for creating radiation-resistant integrated circuits.



НОВЫЕ РАДИОЭЛЕКТРОННЫЕ СИСТЕМЫ И ЭЛЕМЕНТЫ
Evaluation of the capacity of Rate-Splitting Multiple Access communication systems
Abstract
The Rate-Splitting Multiple Access (RSMA) method for multi-antenna communication systems is described. The sequence of operations for RSMA signal formation and processing is presented. RSMA usage scenarios in communication systems are considered, and the efficiency of this method is substantiated. Capacity estimates of the RSMA method are obtained in comparison with other multiple access methods. Numerical modeling of the average capacity per user is conducted using the QuaDRiGa tool. It is shown that RSMA achieves higher capacity compared to other multiple access methods used in multi-antenna communication systems.



Implementation of the possibility of analog elements design
Abstract
A brief description and application of the method of synthesizing radio engineering elements on a specific task using the necessary digital element base for implementing analog devices is presented. Using this method, analog devices were synthesized and experimental studies were carried out, output characteristics were obtained.


