研究目的
Investigating the properties of multipactor breakdown in circular waveguides propagating the TM01 mode, focusing on the effects of the product of the frequency and the gap (f· D) on the ponderomotive force and its influence on electron trajectories and multipactor trends.
研究成果
The study concludes that the product of the frequency and the gap (f· D) significantly influences the multipactor effect in circular waveguides by affecting the ponderomotive force and electron trajectories. A modified f · D threshold of (f · D)th ≈ 338.4 GHz mm was identified, separating the susceptibility diagram into single-sided, double-sided, and mixed-sided zones. The initial electron energy was found to influence electron trajectories at high f · D and low RF power, dominating the multipactor behavior in the mixed-sided region.
研究不足
The study neglects the space charge effect and the surface electrostatic field Edc in the simulations. The analysis is limited to the TM01 mode in circular waveguides, and the effects of other modes or waveguide geometries are not considered.
1:Experimental Design and Method Selection:
A Monte Carlo model was constructed to track the motion of electrons, study multipactor scenarios, and predict multipactor thresholds. The study incorporated relativistic dynamics to develop a reliable code for electron motion in a circular waveguide under the TM01 transmitting mode.
2:Sample Selection and Data Sources:
The study focused on circular waveguides with varying radii and frequencies to analyze the multipactor effect under different conditions.
3:List of Experimental Equipment and Materials:
The simulation utilized a fourth-order Runge–Kutta (RK4) integrator for numerical integration, considering the RF electromagnetic field distribution of the TM01 mode in a circular waveguide.
4:Experimental Procedures and Operational Workflow:
Single-particle trajectories were tracked to study the effect of the ponderomotive force on real electrons in a circular waveguide. The initial RF phase was set to π to guarantee a decelerating RF field.
5:Data Analysis Methods:
The production ratio of the secondary electrons Ne/N0 and the average kinetic energy of the electrons Wave were tracked over several hundred periods to analyze the multipactor effect.
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