540
Views
15
CrossRef citations to date
0
Altmetric
Articles

Nonlinear analysis of beam-wave interaction in a planar THz travelling-wave tube amplifier

ORCID Icon
Pages 190-203 | Received 30 May 2017, Accepted 27 Aug 2017, Published online: 12 Sep 2017

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Articles from other publishers (14)

Vishnu Srivastava. (2023) Design of High Power THz TWT Amplifier for 6G Wireless-Communication System. Design of High Power THz TWT Amplifier for 6G Wireless-Communication System.
Haifeng Zhang, Ying Ge, Yunkun Lu, Mengjie Yan, Jingcen Zhang, Hao Fu, Haiming Long, Pei Li, Yang Li, Chenzeng Zhang & Junjie Hao. (2023) Suppression of secondary electron emission of oxygen free copper by two-step electrodeposition of rGO/Cu composite coating. Applied Surface Science 611, pages 155789.
Crossref
Shuanghong Zhou, Yuanlin Yao, Yuting Zhang & Bin Ge. (2022) Electromagnetic Particle Algorithm for Beam–Wave Interaction in Traveling Wave Tube of Symmetry. Symmetry 14:10, pages 2119.
Crossref
Vikas Kumar. (2020) Carbon Nano Tubes: Synthesis and Characterization for Microwave Applications. Transactions on Electrical and Electronic Materials 22:4, pages 515-518.
Crossref
Zhigang Lu, Ruidong Wen, Zhanliang Wang, Huarong Gong & Yubin Gong. (2021) Investigation of Sine Groove Waveguide Slow Wave Structure for Terahertz Traveling Wave Tube. IEEE Transactions on Electron Devices 68:2, pages 804-810.
Crossref
Igor A. Navrotsky, Anton A. Burtsev, Valeriy V. Emelyanov, Vladimir N. Titov & Nikita M. Ryskin. (2021) Electron-Optic System With a Converged Sheet Electron Beam for a 0.2-THz Traveling-Wave Tube. IEEE Transactions on Electron Devices 68:2, pages 798-803.
Crossref
Zhigang Lu, Weihua Ge, Ruidong Wen, Zhanliang Wang, Huarong Gong, Yanyu Wei & Yubin Gong. (2020) 0.2-THz Traveling Wave Tube Based on the Sheet Beam and a Novel Staggered Double Corrugated Waveguide. IEEE Transactions on Plasma Science 48:9, pages 3229-3237.
Crossref
Nikita Gurjar, Afaque M. Hossain, Rishu Singh, R. K. Sharma, V. P. Anitha, Raj Singh & Niraj Kumar. (2019) Design Approach for a Miniaturized Pseudospark-Based High-Current-Density Sheet Electron Beam Source. IEEE Transactions on Electron Devices 66:10, pages 4398-4402.
Crossref
Nikita M. Ryskin, Andrey G. Rozhnev, Andrey E. Ploskih, Roman A. Torgashov, Vladimir N. Titov, Anton A. Burtsev, Igor A. Navrotsky & Aleksei V. Danilushkin. (2019) Design and Simulation of a 0.2-THz Traveling-Wave Tube with Sheet Electron Beam Focused by Reversal Magnetic Field. Design and Simulation of a 0.2-THz Traveling-Wave Tube with Sheet Electron Beam Focused by Reversal Magnetic Field.
Shruti Nirantar, Taimur Ahmed, Madhu Bhaskaran, Jin-Woo Han, Sumeet Walia & Sharath Sriram. (2019) Electron Emission Devices for Energy‐Efficient Systems. Advanced Intelligent Systems 1:4, pages 1900039.
Crossref
Richards Joe Stanislaus, Anirban Bera & Rajendra Kumar Sharma. (2019) An Approach for Bandwidth and Gain Enhancement of 0.22THz RF Amplifier. An Approach for Bandwidth and Gain Enhancement of 0.22THz RF Amplifier.
Hanwen Tian, Zhigang Lu, Wei Shao, Zhanliang Wang, Jialu Ma, Tenglong He, Huarong Gong, Zhaoyun Duan, Tao Tang, Yanyu Wei, Jinjun Feng & Yubin Gong. (2019) 3-D Fast Nonlinear Simulation for Beam–Wave Interaction of Sheet Beam Traveling-Wave Tube. IEEE Transactions on Electron Devices 66:3, pages 1504-1511.
Crossref
Andrey E. Ploskih, Nikita M. Ryskin, Anton A. Burtsev, Aleksei V. Danilushkin & Igor A. Navrotsky. (2019) Performance improvement of a sub-THz traveling-wave tube by using an electron optic system with a converging sheet electron beam. Results in Physics 12, pages 799-803.
Crossref
Tatiana A. Karetnikova, Andrey G. Rozhnev, Nikita M. Ryskin, Alexey E. Fedotov, Sergey V. Mishakin & Naum S. Ginzburg. (2018) Gain Analysis of a 0.2-THz Traveling-Wave Tube With Sheet Electron Beam and Staggered Grating Slow Wave Structure. IEEE Transactions on Electron Devices 65:6, pages 2129-2134.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.