Traveling Wave Tube Eigenmode Solution for Beam-Loaded Slow Wave Structure Based on Particle-in-Cell Simulations
Author:
Affiliation:
1. Department of Electrical Engineering and Computer Science, University of California at Irvine, Irvine, CA, USA
Funder
Air Force Office of Scientific Research
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Condensed Matter Physics,Nuclear and High Energy Physics
Link
http://xplorestaging.ieee.org/ielx7/27/9735185/09715045.pdf?arnumber=9715045
Reference59 articles.
1. The multifrequency spectral eulerian (muse) model of a traveling wave tube
2. Large-Signal 2-D Modeling of Folded-Waveguide Traveling Wave Tubes
3. A Simple Closed-Form Formula for Plasma-Frequency Reduction Factor for a Solid Cylindrical Electron Beam
4. Plasma frequency reduction factors in electron beams
5. Design of a high gain and high efficiency W-band folded waveguide TWT using phase-velocity taper
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1. Parametric Modeling of Serpentine Waveguide Traveling Wave Tubes;IEEE Transactions on Plasma Science;2024-04
2. Backward-Wave Oscillation Suppression in Folded Waveguide Traveling-Wave Tube With Metamaterial Absorber;IEEE Access;2023
3. Reduced Plasma Frequency Calculation Based on Particle-in-Cell Simulations;IEEE Transactions on Plasma Science;2022-10
4. Eigenmode Solution for Beam-Loaded Slow Wave Structures Based on Particle-In-Cell Simulations;2022 23rd International Vacuum Electronics Conference (IVEC);2022-04-25
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