The gyrotron startup scenario in the single mode time dependent approach
The paper explains how to solve the Gyrotron equation system in the Single Mode Time Dependent Approach. In particular, we point out problems encountered when solving these well-known equations. The starting current estimation approach a using time model is suggested. The solution has been implement...
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| Published in: | Mathematical modelling and analysis Vol. 24; no. 4; pp. 494 - 506 |
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| Main Authors: | , , , |
| Format: | Journal Article |
| Language: | English |
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Vilnius
Vilnius Gediminas Technical University
25.10.2019
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| ISSN: | 1392-6292, 1648-3510 |
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| Abstract | The paper explains how to solve the Gyrotron equation system in the Single Mode Time Dependent Approach. In particular, we point out problems encountered when solving these well-known equations. The starting current estimation approach a using time model is suggested. The solution has been implemented in the Matlab code, which is attached to the article. |
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| AbstractList | The paper explains how to solve the Gyrotron equation system in the Single Mode Time Dependent Approach. In particular, we point out problems encountered when solving these well-known equations. The starting current estimation approach a using time model is suggested. The solution has been implemented in the Matlab code, which is attached to the article. The paper explains how to solve the Gyrotron equation system in the Single Mode Time Dependent Approach. In particular, we point out problems encountered when solving these well-known equations. The starting current estimation approach a using time model is suggested. The solution has been implemented in the Matlab code, which is attached to the article. Keywords: time dependent approach, gyrotron, differential equation, Matlab code. AMS Subject Classification: 34-04; 34M25. Online supplementary material: Supporting information for this paper is available as online supplementary material at |
| Audience | Academic |
| Author | Nowak, Kacper Plinski, Edward Franciszek Dumbrajs, Olgierd Wieckowski, Tadeusz |
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| Copyright | Copyright (c) 2019 The Author(s). Published by Vilnius Gediminas Technical University. COPYRIGHT 2019 Vilnius Gediminas Technical University 2019. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. |
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| References | key-10.3846/mma.2019.030-6 key-10.3846/mma.2019.030-4 key-10.3846/mma.2019.030-5 G.S. Nusinowich (key-10.3846/mma.2019.030-12) 2004 key-10.3846/mma.2019.030-8 key-10.3846/mma.2019.030-9 N.S. Ginzburg (key-10.3846/mma.2019.030-7) 1986; 29 key-10.3846/mma.2019.030-15 key-10.3846/mma.2019.030-13 key-10.3846/mma.2019.030-14 key-10.3846/mma.2019.030-11 key-10.3846/mma.2019.030-3 J. Cepitis (key-10.3846/mma.2019.030-2) 2012; 17 H. Khatun (key-10.3846/mma.2019.030-10) 2011; 49 key-10.3846/mma.2019.030-1 |
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| SubjectTerms | Analysis differential equation Differential equations gyrotron Matlab code Plasma physics Power (Philosophy) Time Time dependence time dependent approach |
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| Title | The gyrotron startup scenario in the single mode time dependent approach |
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