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Electromagnetic wave interaction with 3D arrays of quadrupolar inclusions

机译:电磁波与四极包含物的3D阵列的相互作用

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In the homogenization of metamaterials, one of the important challenges yet to be fully resolved resides in the proper modeling of the influence of higher-order multipolar terms describing the basic constituent inclusions. As an important step in this direction, we consider here a metamaterial composed of a three-dimensional cubic array of purely quadrupolar inclusions, with zero electric and magnetic dipole moments, so that the leading term in their multipole expansion is the electric quadrupole moment. Applying a first-principle homogenization approach similar to (A. Alù, Phys. Rev. B, 84, 075153, 2011) the spatially dispersive permittivity of such an array in the long-wavelength limit is derived. This tensorial permittivity is a quadratic function of the propagation constant in the medium and it is shown to depend on the propagation direction, as a symptom of strong spatial dispersion.
机译:在超材料的均质化中,尚未完全解决的重要挑战之一在于对描述基本成分包含物的高阶多极项的影响进行正确建模。作为朝这个方向迈出的重要一步,我们在这里考虑一种由纯四极夹杂物的三维立方阵列构成的超材料,其电和磁偶极矩为零,因此其多极膨胀的首要项是电四极矩。应用类似于(A.Alù,Phys.Rev.B,84,075153,2011)的第一原理均质化方法,可以得出这种阵列在长波长范围内的空间色散介电常数。张量介电常数是介质中传播常数的二次函数,并且表现为依赖于传播方向,这是强烈的空间色散的征兆。

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