A code for a fast 1-dimensional model is under development for the simulation for the beam-wave interaction in the traveling wave tube amplifier (TWTA). The code is based on a Lagrangian algorithm. The input parameters are modified to extend the code validity to structures different from angularly symmetric structures. The preliminary results for the output power and gain for the double corrugated waveguide (DCW) TWT at 225 GHz are compared with particle in cell (PIC) simulations
<p>Datasets of Dispersion of the folded waveguide and beam line (Fig1) and output power (Fig 2) of t...
We construct here a Lagrangian field formulation for a system consisting of an electron beam interac...
Extensive simulations are performed to investigate a ka-band gyrotron traveling wave tube amplifier ...
A code for a fast 1-dimensional model has been developed for the simulation for the beam-wave intera...
Abstract—To simulate the beam and wave interaction (BWI) of various types of traveling wave tube amp...
A novel code based on non-linear Lagrangian formulation of beam wave interaction in traveling wave t...
A novel Lagrangian code for fast simulation of non-rotationally symmetric slow wave structure for mi...
Abstract—A procedure for converting a 1D Lagrangian code for helical waveguide traveling wave tubes ...
The analysis of a Ka-band gyrotron Travelling Wave Tube (gyro-TWT) amplifier using a uniform cylindr...
This paper describes the present position in the development of a CAD package for coupled-cavity tra...
The folded-waveguide slow-wave structure (SWS) is a robust beam-wave interaction circuit for millime...
Nonlinear simulation results for a 220-GHz rectangular dielectric-loaded traveling-wave amplifier ar...
In this article, an improved model for the beam-wave interaction of sheet beam in traveling wave tub...
Through continued innovation and growth, traveling wave tube amplifiers (TWTAs) remains the microwav...
A 3-D frequency-domain nonlinear model for sheet beam (SB) traveling-wave tubes (TWTs) based on fold...
<p>Datasets of Dispersion of the folded waveguide and beam line (Fig1) and output power (Fig 2) of t...
We construct here a Lagrangian field formulation for a system consisting of an electron beam interac...
Extensive simulations are performed to investigate a ka-band gyrotron traveling wave tube amplifier ...
A code for a fast 1-dimensional model has been developed for the simulation for the beam-wave intera...
Abstract—To simulate the beam and wave interaction (BWI) of various types of traveling wave tube amp...
A novel code based on non-linear Lagrangian formulation of beam wave interaction in traveling wave t...
A novel Lagrangian code for fast simulation of non-rotationally symmetric slow wave structure for mi...
Abstract—A procedure for converting a 1D Lagrangian code for helical waveguide traveling wave tubes ...
The analysis of a Ka-band gyrotron Travelling Wave Tube (gyro-TWT) amplifier using a uniform cylindr...
This paper describes the present position in the development of a CAD package for coupled-cavity tra...
The folded-waveguide slow-wave structure (SWS) is a robust beam-wave interaction circuit for millime...
Nonlinear simulation results for a 220-GHz rectangular dielectric-loaded traveling-wave amplifier ar...
In this article, an improved model for the beam-wave interaction of sheet beam in traveling wave tub...
Through continued innovation and growth, traveling wave tube amplifiers (TWTAs) remains the microwav...
A 3-D frequency-domain nonlinear model for sheet beam (SB) traveling-wave tubes (TWTs) based on fold...
<p>Datasets of Dispersion of the folded waveguide and beam line (Fig1) and output power (Fig 2) of t...
We construct here a Lagrangian field formulation for a system consisting of an electron beam interac...
Extensive simulations are performed to investigate a ka-band gyrotron traveling wave tube amplifier ...