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Self-consistent and complete field theory of relativistic travelling wave tube amplifier with plasma loaded tape helix

机译:等离子体载带螺旋相对论行波管放大器的自洽全场理论

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摘要

The dispersion relation was derived for electromagnetic wave propagation through a plasma-loaded helix travelling wave tube (TWT). The analysis is based on field theory for a configuration in which a magnetized pencil-type beam. propagates through cold plasma in the helix enclosed with a loss-free wall. The obtained dispersion relation implicitly includes azimuthal variations and all spatial harmonics of the tape helix. The characteristics of the growth rate were studied numerically. The results show that the phase velocity increases with increasing plasma density and axial magnetic field. By numerical computation, the dispersion characteristic of plasma-loaded helix TWT analyzed in different cases of various plasma densities, beam energy, beam density, and axial guide magnetic field. The results show that the presence of plasma significantly increases the growth rate and bandwidth. The enhancement in beam energy and density cause an increase in growth rate and frequency. The growth rate increases with increasing axial field until is reaches a maximum; further increases in the axial guide field lead to a relatively constant growth rate.
机译:推导了通过电磁波传播通过等离子螺旋行波管(TWT)的色散关系。该分析基于场论,用于磁化铅笔形光束的配置。通过冷等离子体在螺旋壁中传播,螺旋壁被无损壁包围。所获得的色散关系隐含地包括磁带螺旋线的方位角变化和所有空间谐波。数值研究了增长率的特征。结果表明,相速度随着等离子体密度和轴向磁场的增加而增加。通过数值计算,分析了在不同等离子体密度,束能量,束密度和轴向引导磁场的不同情况下等离子加载螺旋TWT的色散特性。结果表明,血浆的存在显着增加了生长速率和带宽。束能量和密度的增加导致生长速率和频率的增加。生长速度随着轴向磁场的增加而增加,直到达到最大值。轴向引导场的进一步增加导致相对恒定的增长率。

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