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The most general classes of Tellegen media reducible to simple reciprocal media: A geometrical approach

机译:Tellegen Media最通用的类别还原于简单的互惠媒体:几何方法

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Duality mappings allow to transform a nonreciprocal achiral bi-isotropic medium (Tellegen medium) into a conventional reciprocal material leaving the free space invariant. In particular, the analytical solutions of electromagnetic problems involving a single Tellegen medium and a vacuum can be found by applying the inverse duality transformation to the solution of the duality transformed problem wherein the materials are conventional reciprocal media. Here, based on the geometrical interpretation of duality transformations in the Riemann sphere, we derive the most general classes of Tellegen media that are reducible to simple isotropic media (SIMs) under the same duality transformation. It is shown that Tellegen media can be identified with the points of the Riemann sphere. Moreover, duality transformations are classified into different categories according to their geometrical actions on the sphere. We apply the developed theory to periodic structures formed by Tellegen media showing how the wave propagation in these complex structures can be easily studied using duality transformations. Furthermore, to unveil the role of the nonreciprocal response, we investigate the wave propagation in Tellegen periodic structures wherein the pertinent materials cannot be reduced to conventional media.
机译:二元映射允许将非透视性成立双同位数培养基(Tellegen培养基)转化为常规往复物质,使自由空间不变。特别地,可以通过将逆二元变换施加到二元变换的问题的溶液来发现涉及单个Tellegen培养基和真空的电磁问题的分析解,其中材料是常规往复介质。在这里,基于Riemann球体的二元变换的几何解释,我们派生了在相同的二元变换下可降低到简单的各向同性媒体(SIMS)的最通用的Tellegen媒体。结果表明,可以用黎曼球体的点来识别Tellegen介质。此外,根据其在球体上的几何动作,将二元变换分为不同类别。我们将开发的理论应用于通过Tellegen介质形成的周期性结构,示出了如何使用二元变换容易地研究这些复杂结构中的波传播的波动。此外,为了揭示非透视响应的作用,我们研究了Tellegen周期性结构中的波传播,其中所述相关材料不能还原到常规介质。

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