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Electromagnetic Analysis of a Disk-Loaded Coaxial Waveguiding Structure for MILO

机译:MILO盘载同轴波导结构的电磁分析

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An all-metal disk-loaded coaxial waveguiding structure, for its application in a magnetically insulated line oscillator (MILO), as a slow-wave interaction structure, excited in the TM mode, has been field analyzed. In the analytical model, modal matching technique has been used considering all the space harmonics generated due to the structure axial periodicity in the free-space region inside the structure and stationary modal harmonics caused by the reflections from the disk walls in the disk-occupied region of the structure. The dispersion relation of the structure is obtained considering the continuity of the fields at the interface between these two regions. A system of homogeneous equations is formed in the Fourier components of the field constants. The condition for the nontrivial solution of the equations gives the dispersion relation of the structure in the form of a determinantal equation. The analysis is further extended for the interaction impedance, which has direct relevance with the temporal RF signal growth in the device. The derived dispersion characteristic has been validated as special cases for the known results and has been also validated with those results published in the literature. Furthermore, the structure has been simulated using commercial code “CST Microwave Studio” for the dispersion as well as the interaction impedance characteristics. The simulated values have been found to be in agreement with the theoretically derived results. The dispersion characteristics and the axial interaction impedance of the structure have been plotted for a wide range of structure parameters. Furthermore, the desired operation of the MILO device, the method of structure parameter selection, and the effect of parameter variation have been also discussed. This study would help the design engineers in understanding the physics and in selecting the coaxial disk-loaded structure parameters for their successful use in MILO devices having reasonab- e RF growth rate in synchronism with the electron beam.
机译:对一种全金属圆盘加载的同轴波导结构进行了现场分析,该结构作为在TM模式下激发的慢波相互作用结构,在磁绝缘线振荡器(MILO)中的应用。在解析模型中,模态匹配技术考虑了由于结构内部自由空间区域的结构轴向周期性而产生的所有空间谐波,以及由结构盘占据区域的盘壁反射引起的稳态模态谐波。考虑了这两个区域界面处场的连续性,得到了结构的色散关系。在场常数的傅里叶分量中形成了一个齐次方程组。方程的非平凡解的条件以行列式方程的形式给出了结构的色散关系。该分析进一步扩展了交互阻抗,该阻抗与器件中的时间射频信号增长直接相关。得出的色散特性已被验证为已知结果的特例,并且也已通过文献中发表的这些结果进行验证。此外,还使用商业代码“CST Microwave Studio”对该结构的色散和相互作用阻抗特性进行了仿真。仿真值与理论推导结果一致。已经针对各种结构参数绘制了结构的色散特性和轴向相互作用阻抗。此外,还讨论了MILO器件的期望操作、结构参数选择方法以及参数变化的影响。本研究将有助于设计工程师理解物理原理,并选择同轴圆盘加载结构参数,以便在与电子束同步具有合理射频增长速率的MILO器件中成功使用。

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