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Enhancement of polarizabilities of cylinders with cylinder-slab resonances

机译:通过圆柱-平板共振增强圆柱的极化率

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摘要

If an object is very small in size compared with the wavelength of light, it does not scatter light efficiently. It is hence difficult to detect a very small object with light. We show using analytic theory as well as full wave numerical calculation that the effective polarizability of a small cylinder can be greatly enhanced by coupling it with a superlens type metamaterial slab. This kind of enhancement is not due to the individual resonance effect of the metamaterial slab, nor due to that of the object, but is caused by a collective resonant mode between the cylinder and the slab. We show that this type of particle-slab resonance which makes a small two-dimensional object much “brighter” is actually closely related to the reverse effect known in the literature as “cloaking by anomalous resonance” which can make a small cylinder undetectable. We also show that the enhancement of polarizability can lead to strongly enhanced electromagnetic forces that can be attractive or repulsive, depending on the material properties of the cylinder.
机译:如果物体的尺寸与光的波长相比非常小,则不能有效地散射光。因此,很难用光检测非常小的物体。我们使用解析理论和全波数值计算表明,将小圆柱体与超透镜型超材料平板耦合可以大大提高其有效极化率。这种增强不是由于超材料平板的单个共振效应,也不是由于物体的共振,而是由圆柱体和平板之间的集体共振模式引起的。我们表明,这种使小二维物体“更明亮”的粒子平板共振实际上与文献中称为“异常共振掩盖”的反向效应密切相关,后者会使小圆柱体无法检测到。我们还表明,根据圆柱体的材料特性,极化性的增强可以导致电磁力大大增强,从而具有吸引力或排斥力。

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