Generation of double-frequency radiation in monotron with three-gap cavity

Purpose of this work is to study modes and conditions that make it possible to excite the highest type of microwave oscillations, the frequency of which is a multiple of the frequency of the main type, in a monotron with a three-band resonator. Method of the investigation is a numerical 3D modeling,...

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Autores principales: Muchkaev, Vadim Yurievich, Onishchenko, Anton Pavlovich, Tsarev, Vladislav Alekseevich
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RU
Publicado: Saratov State University 2021
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spelling oai:doaj.org-article:d1b83476ce704c058a539fa04e6169272021-11-30T10:48:54ZGeneration of double-frequency radiation in monotron with three-gap cavity0869-66322542-190510.18500/0869-6632-2021-29-6-915-926https://doaj.org/article/d1b83476ce704c058a539fa04e6169272021-11-01T00:00:00Zhttps://andjournal.sgu.ru/sites/andjournal.sgu.ru/files/text-pdf/2021/11/muchkaev_915-926.pdfhttps://doaj.org/toc/0869-6632https://doaj.org/toc/2542-1905Purpose of this work is to study modes and conditions that make it possible to excite the highest type of microwave oscillations, the frequency of which is a multiple of the frequency of the main type, in a monotron with a three-band resonator. Method of the investigation is a numerical 3D modeling, used to calculate the dimensions and electrodynamic parameters of the resonator (characteristic impedance, coupling coefficient, relative electronic conductivity); operation modes of the monotron are considered, which are characterized by excitation of oscillations in the highest type oscillations. Result. In the resonator under consideration, it is possible to achieve a multiple (equal to three) ratio between the frequency of the 25th highest type of oscillations and the frequency of the π/2-type. It was shown that in such resonator simultaneous excitation of electromagnetic field on those frequencies can be made. The maximum of an output power achieved at 100.22 GHz is 15.4 W with an accelerating voltage of 7825 V and an electronic beam microperveance 0.36 µA/V3/2 . The maximal efficiency on a third harmonic is 0.83% while the total efficiency (generating electromagnetic waves of the first and the third harmonics) is up to 17%. Conclusion. It was set that the described method of generation of terahertz range radiation is promising for further investigation, as it solves problem that orthodox microwave devices meet in the millimeter wavelength range, such as small linear dimensions of the components and critical current density of the electronic beam.Muchkaev, Vadim YurievichOnishchenko, Anton PavlovichTsarev, Vladislav AlekseevichSaratov State Universityarticlethree-gap cavitymonotronmillimeter wavelength rangepic modelingPhysicsQC1-999ENRUИзвестия высших учебных заведений: Прикладная нелинейная динамика, Vol 29, Iss 6, Pp 915-926 (2021)
institution DOAJ
collection DOAJ
language EN
RU
topic three-gap cavity
monotron
millimeter wavelength range
pic modeling
Physics
QC1-999
spellingShingle three-gap cavity
monotron
millimeter wavelength range
pic modeling
Physics
QC1-999
Muchkaev, Vadim Yurievich
Onishchenko, Anton Pavlovich
Tsarev, Vladislav Alekseevich
Generation of double-frequency radiation in monotron with three-gap cavity
description Purpose of this work is to study modes and conditions that make it possible to excite the highest type of microwave oscillations, the frequency of which is a multiple of the frequency of the main type, in a monotron with a three-band resonator. Method of the investigation is a numerical 3D modeling, used to calculate the dimensions and electrodynamic parameters of the resonator (characteristic impedance, coupling coefficient, relative electronic conductivity); operation modes of the monotron are considered, which are characterized by excitation of oscillations in the highest type oscillations. Result. In the resonator under consideration, it is possible to achieve a multiple (equal to three) ratio between the frequency of the 25th highest type of oscillations and the frequency of the π/2-type. It was shown that in such resonator simultaneous excitation of electromagnetic field on those frequencies can be made. The maximum of an output power achieved at 100.22 GHz is 15.4 W with an accelerating voltage of 7825 V and an electronic beam microperveance 0.36 µA/V3/2 . The maximal efficiency on a third harmonic is 0.83% while the total efficiency (generating electromagnetic waves of the first and the third harmonics) is up to 17%. Conclusion. It was set that the described method of generation of terahertz range radiation is promising for further investigation, as it solves problem that orthodox microwave devices meet in the millimeter wavelength range, such as small linear dimensions of the components and critical current density of the electronic beam.
format article
author Muchkaev, Vadim Yurievich
Onishchenko, Anton Pavlovich
Tsarev, Vladislav Alekseevich
author_facet Muchkaev, Vadim Yurievich
Onishchenko, Anton Pavlovich
Tsarev, Vladislav Alekseevich
author_sort Muchkaev, Vadim Yurievich
title Generation of double-frequency radiation in monotron with three-gap cavity
title_short Generation of double-frequency radiation in monotron with three-gap cavity
title_full Generation of double-frequency radiation in monotron with three-gap cavity
title_fullStr Generation of double-frequency radiation in monotron with three-gap cavity
title_full_unstemmed Generation of double-frequency radiation in monotron with three-gap cavity
title_sort generation of double-frequency radiation in monotron with three-gap cavity
publisher Saratov State University
publishDate 2021
url https://doaj.org/article/d1b83476ce704c058a539fa04e616927
work_keys_str_mv AT muchkaevvadimyurievich generationofdoublefrequencyradiationinmonotronwiththreegapcavity
AT onishchenkoantonpavlovich generationofdoublefrequencyradiationinmonotronwiththreegapcavity
AT tsarevvladislavalekseevich generationofdoublefrequencyradiationinmonotronwiththreegapcavity
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