Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Ruslan V. Tsygankov"'
Publikováno v:
IEEE Electron Device Letters. 42:935-938
This letter describes a recent activity in the development of a high-power microwave source based on a modified relativistic backward wave oscillator that is driven by an advanced version of a SINUS-family accelerator using a double-width pulse-formi
Publikováno v:
IEEE Transactions on Instrumentation and Measurement. 70:1-6
The design of a liquid calorimeter with a closed absorbing load for measuring the energy of high-power microwave pulses in the range of 8–38 GHz is described. The calorimeter was designed to measure the energy of microwave pulses ranging from 1 to
Autor:
Konstantin A. Sharypov, M. I. Yalandin, Marat R. Ul'maskulov, Vladislav V. Rostov, A. S. Stepchenko, Ruslan V. Tsygankov, O. B. Koval’chuk, S. A. Shunailov
Publikováno v:
Radiophysics and Quantum Electronics. 62:467-471
We propose and study a scheme of a microwave pulse generator operating in the frequency ranges near 37 and 73 GHz, in which the electron interaction with both the (−1)st harmonic of the counterpropagating TM02 mode and the synchronous slowed-down T
Autor:
Aleksei I. Klimov, Vladimir Yu. Konev, Ruslan V. Tsygankov, Pavel V. Priputnev, Alexei Y. Yushchenko, Vladislav V. Rostov, Eugene V. Emel'yanov
Publikováno v:
2020 7th International Congress on Energy Fluxes and Radiation Effects (EFRE).
A circuit was constructed based on a heterodyne receiver to measure the spectral characteristics of Ka-band high-power nanosecond microwave pulses. The circuit included a receiving antenna, three input waveguide directional couplers with different co
Publikováno v:
Electronics; Volume 11; Issue 3; Pages: 406
Electronics, Vol 11, Iss 406, p 406 (2022)
Electronics, Vol 11, Iss 406, p 406 (2022)
The paper considers such modifications of an ordinary pulse-forming line (PFL) as double-width and triple-width forming lines (DWFL, TWFL) built around the PFL by nesting one and two additional uncharged lines, respectively, into its free volume insi
Autor:
V. V. Rostov, Ruslan V. Tsygankov, I.K. Kurkan, O. B. Koval’chuk, A. V. Gunin, Alexei S. Stepchenko, E. M. Tot’meninov, Vladimir Yu. Konev, Alexei Y. Yushchenko, A. A. Elchaninov, Eugene V. Emel'yanov
Publikováno v:
IEEE Transactions on Electron Devices. 65:3019-3025
This paper presents the results of numerical and experimental study of a Ka-band relativistic Cherenkov oscillator with average diameter of the slow-wave structure ${D} \approx \text {2.6}\lambda $ . ( $\lambda $ is a wavelength). The combined mode s
Publikováno v:
2018 20th International Symposium on High-Current Electronics (ISHCE).
The paper describes a study of a new relativistic microwave Cherenkov generator of millimeter wavelength range with the transverse dimension of the electrodynamic system D>2.5λ, where D is the average diameter of the slow wave structure, and λ is t
Autor:
S. A. Onischenko, Vladislav V. Rostov, Ruslan V. Tsygankov, Alexander V. Batrakov, E. V. Nefedtsev, I.K. Kurkan, Evgeny V. Yakovlev
Publikováno v:
2018 20th International Symposium on High-Current Electronics (ISHCE).
Unlike DC and pulsed DC electric fields, microwave fields cause multipactoring when prebreakdown processes become more complicated. Besides field emission, breakdown strength becomes lowered by gas desorption and its ionization. Rare microwave plasma
Autor:
Alexey Klimov, V. Yu. Konev, A. S. Stepchenko, Vladislav V. Rostov, Ruslan V. Tsygankov, E. M. Tot’meninov
Publikováno v:
Technical Physics Letters. 41:32-35
The stability of the microwave radiation phase of A relativistic coaxial backward-wave oscillator with a modulating reflector relative to a fixed voltage at a rising edge of the feeding high-voltage pulse is shown. At a carrying frequency of 1.3 Ghz,
Autor:
Alexey Klimov, V. P. Tarakanov, E. M. Tot’meninov, Igor V. Pegel, V. Yu. Konev, Vladislav V. Rostov, Ruslan V. Tsygankov
Publikováno v:
Technical Physics Letters. 40:152-156
The competition of oscillations in a relativistic backward wave oscillator (RBWO) based on a coaxial waveguide has been studied by theoretical and experimental methods. It is established that the starting current for asymmetric magnetic TEm1 type wav