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On negative reflection in a bianisotropic medium

机译:在各向异性介质中的负反射

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The vast parameter space associated with bianisotropic mediums supports a host of complex electromagnetic behaviours. Planewave propagation in a bianisotropic medium is generally characterized by four independent wavevectors. We considered planewave propagation in a Faraday chiral medium (FCM), which is a particular bianisotropic medium that combines natural optical activity with Faraday rotation. FCMs may be theoretically conceptualized as metamaterials arising from the homogenization of isotropic chiral mediums with either magnetically biased ferrites or magnetically biased plasmas. Provided that the magnetoelectric coupling is sufficiently large, there are enhanced possibilities for negative-phase-velocity propagation and therefore negative refraction in FCMs. They can also give rise to the phenomenon of negative reflection. That is, an incident plane wave with positive phase velocity can result in a negatively reflected plane wave with negative phase velocity, as well as a positively reflected plane wave with positive phase velocity. Also, an incident plane wave with negative phase velocity can result in a negatively reflected plane wave with positive phase velocity, as well as a positively reflected plane wave with negative phase velocity.
机译:与各向异性介质相关的巨大参数空间支持许多复杂的电磁行为。各向异性介质中的平面波传播通常以四个独立的波矢为特征。我们考虑了法拉第手性介质(FCM)中的平面波传播,该介质是将自然光学活动与法拉第旋转结合在一起的特殊各向异性介质。从理论上讲,FCM可以被概念化为由具有磁偏置铁氧体或磁偏置等离子体的各向同性手性介质均质化而产生的超材料。假设磁电耦合足够大,则存在负相速度传播的可能性增加,因此在FCM中存在负折射。它们也可能引起负反射现象。即,具有正相速度的入射平面波可以导致具有负相速度的负反射平面波以及具有正相速度的正反射平面波。同样,具有负相速度的入射平面波可以导致具有正相速度的负反射平面波以及具有负相速度的正反射平面波。

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