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A method of changing the dominant mode in a hollow metal waveguide and its application to bends

机译:一种改变中空金属波导主模的方法及其在弯曲中的应用

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It is the usual practice to use, where possible, the dominant mode in a waveguide, because, by making the cross-section of the tube just sufficient to support that mode, all others can be effectively excluded. For some applications the normal dominant mode is unsuitable, and the paper describes arrangements by which another desired mode can be brought to the dominant role. Thus the H01 mode in a circular-section guide can probably be made effectively dominant by employing an anisotropic surface impedance, yielding an inductive reactance to the H modes and a capacitive reactance to the E modes. Advantage is also taken of the conversion of all H modes with the exception of the H0n family to corresponding E modes as a result of longitudinal current in the wall of the guide. The net result of this technique is to make the guide effectively larger for the H modes and smaller for the E modes, while virtually suppressing all H modes requiring for their support longitudinal current. The necessary anisotropic surface impedance is provided by transverse and longitudinal corrugations or by coating the metal with a thin layer of dielectric.
机译:通常的做法是在波导中尽可能使用主导模式,因为通过使管子的横截面恰好足以支撑该模式,可以有效地排除所有其他模式。对于某些应用程序,正常的主导模式是不合适的,并且本文描述了可以将另一种期望的模式发挥主导作用的安排。因此,通过采用各向异性的表面阻抗,可以在圆形截面导轨中有效地控制H01模式,从而产生对H模式的感应电抗和对E模式的电容电抗。由于在导向器壁中的纵向电流,除了H0n族之外,还利用了所有H模式向相应的E模式的转换。这项技术的最终结果是使导向器在H模式下有效增大,而在E模式下减小,而实际上抑制了所有支持纵向电流的H模式。必要的各向异性表面阻抗是通过横向和纵向波纹或通过在金属上覆盖一层薄的电介质来提供的。

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