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Rotation of the Polarization Plane by Grooved Flanges in a Circular Waveguide

机译:圆波导中带槽法兰的偏振面的旋转

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The polarization plane rotators located outside the volume of a transmission line are presented. Their work is based on the excitation of special ("dihedral") eigen-oscillations in a waveguide object formed by two grooved flanges with rotational symmetry. When one of the flanges rotates relative to the other, the composite object becomes 3D-chiral and rotates the plane of polarization by a certain angle in the band of several percent with minimal reverse loss. In circular and coaxial waveguides, mechanical or electronic tuning of the polarization plane is possible by mutual rotation of the flanges or by placing the controlled elements (media) into the object cavity.
机译:给出了位于传输线体积之外的偏振平面旋转器。他们的工作基于激发波导对象中特殊的(“二面体”)本征振动,该波导对象由两个具有旋转对称性的带槽法兰形成。当其中一个凸缘相对于另一个旋转时,复合对象变为3D手性,并在百分之几的范围内将偏振平面旋转一定角度,而反向损耗最小。在圆形和同轴波导中,可以通过法兰的相互旋转或通过将受控元件(介质)放入物腔来对偏振平面进行机械或电子调整。

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