Abstract

Dispersion equations for the Hm,n and Em,n modes in a three-layer metal-dielectric waveguide with odd and even field variations over the thickness of two basic layers are analyzed analytically and numerically. For the first time, the effects of interaction between even cophasal Hns modes and antiphase Hnp modes in the double-thickness basic layer and the odd Emsand Emp modes in the single-thickness basic layer are found. The realizability of high-power microwave power dividers on the basis of the considered waveguides is shown.

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