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Effects of non-periodic variations in periodic RF structures

机译:周期性RF结构中非周期性变化的影响

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The theory of perfectly periodic RF structures has been extensively developed, motivated largely by the many applications, some of which are millimeter wave radiation sources, amplifiers, and slow-wave circuits. Of course, the realization of a periodic structure is never perfect, due to fabrication tolerances and variations in material properties from cell to cell. Such differences among cells may also be intentionally introduced in order to tailor the structure properties for a specific application. In the perfectly periodic case, the geometry and composition of a single cell determines the dispersive and other electromagnetic properties of the structure; these properties are also affected by the properties of the terminations, for structures of finite length.
机译:理想周期射频结构的理论已得到广泛的发展,其驱动力主要来自许多应用,其中一些应用是毫米波辐射源,放大器和慢波电路。当然,由于制造公差和每个电池的材料特性的差异,周期性结构的实现绝不是完美的。还可以有意引入单元之间的这种差异,以针对特定应用定制结构特性。在理想的周期情况下,单个单元的几何形状和组成决定了结构的分散性和其他电磁特性;对于有限长度的结构,这些特性也会受到端子特性的影响。

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