首页> 外文会议>Photonic Metamaterials; Proceedings of SPIE-The International Society for Optical Engineering; vol.6638 >Mean field theory of metallo-dielectric photonic crystals with magnetic components: the long-wavelength limit
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Mean field theory of metallo-dielectric photonic crystals with magnetic components: the long-wavelength limit

机译:具有磁性成分的金属电介质光子晶体的平均场论:长波长极限

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Recently there has been developed a homogenization theory of photonic crystals, based on the averaging of the Maxwell Equations within the unitary cell [P. Halevi and F. Perez-Rodriguez, Proc. SPIE 6320, 63200T (2006)]. It leads to the bianisotropic response with the electric displacement D and the magnetic induction B vectors both depending linearly on the electric E and magnetic H fields. Despite the generality of this theory, the case of naturally magnetic ingredients has not been considered. For this reason, in this work we extend the aforementioned theory in this sense. In this way the ingredients of the unitary cell are characterized by a permeability, in addition to a generalized complex conductivity. These parameters are assumed to be given for every position in the unitary cell of the photonic crystal. We conclude that in the presence of naturally magnetic ingredients the medium response is still bianisotropic, but now the material dyadics depend on both the permeability and complex conductivity. Numerical results are given for the case of a one-dimensional photonic crystal with ferrite layers.
机译:最近,已经发展了基于,胞内麦克斯韦方程组平均的光子晶体均化理论[P. Halevi和F.Perez-Rodriguez,过程SPIE 6320,63200T(2006)]。这导致电位移D和磁感应强度B向量均线性依赖于电场E和磁场H的各向异性响应。尽管该理论具有普遍性,但尚未考虑天然磁性成分的情况。因此,在这项工作中,我们从这个意义上扩展了上述理论。以此方式,除了广义的复数电导率之外,单体电池的成分还具有渗透性。假定为光子晶体的晶胞中的每个位置给出了这些参数。我们得出的结论是,在存在天然磁性成分的情况下,介质响应仍然是各向异性的,但现在材料的动力学取决于磁导率和复电导率。对于具有铁素体层的一维光子晶体,给出了数值结果。

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