Simulation of high-efficiency gyrotron with the system of multistage energy recovery

The results of simulations of helical electron beam formation and collecting, as well as high frequency wave-particle interaction processes, in the moderate-power experimental gyrotron with the frequency of 74.2 GHz are presented. Various methods of beam quality and electron efficiency improvement v...

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Main Authors: Trofimov Pavel, Louksha Oleg
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:ITM Web of Conferences
Online Access:https://www.itm-conferences.org/articles/itmconf/pdf/2019/07/itmconf_crimico2019_02001.pdf
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spelling doaj-b79efc7b4f7545739a93b33a335d47f12021-02-02T04:00:24ZengEDP SciencesITM Web of Conferences2271-20972019-01-01300200110.1051/itmconf/20193002001itmconf_crimico2019_02001Simulation of high-efficiency gyrotron with the system of multistage energy recoveryTrofimov Pavel0Louksha Oleg1Peter the Great St. Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityThe results of simulations of helical electron beam formation and collecting, as well as high frequency wave-particle interaction processes, in the moderate-power experimental gyrotron with the frequency of 74.2 GHz are presented. Various methods of beam quality and electron efficiency improvement via optimization of electric and magnetic field distributions in the cathode region were realized. In the optimal operating regime with high pitch ratio and low velocity spread, the electron efficiency of about 46 % was calculated for the gyrotron with the magnetron injection gun including a control electrode and a cathode with sectioned emission. In the gyrotron collector region, a system of 4-stage electron energy recovery was used for enhancement of total efficiency of the device. By improving the quality of the electron beam and efficient energy recovery in the collector region, the total efficiency of the gyrotron equal to 71.8% was achieved.https://www.itm-conferences.org/articles/itmconf/pdf/2019/07/itmconf_crimico2019_02001.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Trofimov Pavel
Louksha Oleg
spellingShingle Trofimov Pavel
Louksha Oleg
Simulation of high-efficiency gyrotron with the system of multistage energy recovery
ITM Web of Conferences
author_facet Trofimov Pavel
Louksha Oleg
author_sort Trofimov Pavel
title Simulation of high-efficiency gyrotron with the system of multistage energy recovery
title_short Simulation of high-efficiency gyrotron with the system of multistage energy recovery
title_full Simulation of high-efficiency gyrotron with the system of multistage energy recovery
title_fullStr Simulation of high-efficiency gyrotron with the system of multistage energy recovery
title_full_unstemmed Simulation of high-efficiency gyrotron with the system of multistage energy recovery
title_sort simulation of high-efficiency gyrotron with the system of multistage energy recovery
publisher EDP Sciences
series ITM Web of Conferences
issn 2271-2097
publishDate 2019-01-01
description The results of simulations of helical electron beam formation and collecting, as well as high frequency wave-particle interaction processes, in the moderate-power experimental gyrotron with the frequency of 74.2 GHz are presented. Various methods of beam quality and electron efficiency improvement via optimization of electric and magnetic field distributions in the cathode region were realized. In the optimal operating regime with high pitch ratio and low velocity spread, the electron efficiency of about 46 % was calculated for the gyrotron with the magnetron injection gun including a control electrode and a cathode with sectioned emission. In the gyrotron collector region, a system of 4-stage electron energy recovery was used for enhancement of total efficiency of the device. By improving the quality of the electron beam and efficient energy recovery in the collector region, the total efficiency of the gyrotron equal to 71.8% was achieved.
url https://www.itm-conferences.org/articles/itmconf/pdf/2019/07/itmconf_crimico2019_02001.pdf
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AT loukshaoleg simulationofhighefficiencygyrotronwiththesystemofmultistageenergyrecovery
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