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Magnetic and electric coherence in forward-and back-scattered electromagnetic waves by a single dielectric subwavelength sphere

机译:单个电介质亚波长球在向前和向后散射电磁波中的电磁和电相干

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摘要

Magnetodielectric small spheres present unusual electromagnetic scattering features, theoretically predicted a few decades ago. However, achieving such behaviour has remained elusive, due to the non-magnetic character of natural optical materials or the difficulty in obtaining low-loss highly permeable magnetic materials in the gigahertz regime. Here we present unambiguous experimental evidence that a single low-loss dielectric subwavelength sphere of moderate refractive index (n=4 like some semiconductors at near-infrared) radiates fields identical to those from equal amplitude crossed electric and magnetic dipoles, and indistinguishable from those of ideal magnetodielectric spheres. The measured scattering radiation patterns and degree of linear polarization (3-9 GHz/33-100 mm range) show that, by appropriately tuning the a/λ ratio, zero-backward ('Huygens' source) or almost zero-forward ('Huygens' reflector) radiated power can be obtained. These Kerker scattering conditions only depend on a/λ. Our results open new technological challenges from nano-and micro-photonics to science and engineering of antennas, metamaterials and electromagnetic devices. © 2012 Macmillan Publishers Limited. All rights reserved.
机译:磁电小球具有不寻常的电磁散射特征,理论上是在几十年前就预测到的。然而,由于天然光学材料的非磁性特征或难以获得千兆赫兹制的低损耗,高导磁性磁性材料,实现这种行为仍然是遥不可及的。在这里,我们提供了明确的实验证据,即一个中等折射率的低损耗电介质亚波长球体(类似于近红外的某些半导体,n = 4)辐射的电场与等幅交叉电和磁偶极子产生的电场相同,并且与理想的磁电球。测得的散射辐射图和线性极化程度(3-9 GHz / 33-100 mm范围)显示,通过适当地调整a /β比,零后向(“惠更斯”源)或几乎为零前向(“惠更斯”源)可以获取“惠更斯”反射镜的辐射功率。这些Kerker散射条件仅取决于a /α。我们的结果为从纳米和微光子学到天线,超材料和电磁设备的科学与工程带来了新的技术挑战。 ©2012 Macmillan Publishers Limited。版权所有。

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