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与磁电介质共振亚波长散射体耦合的偶极源的可控发射。

Controllable emission of a dipolar source coupled with a magneto-dielectric resonant subwavelength scatterer.

作者信息

Rolly Brice, Geffrin Jean-Michel, Abdeddaim Redha, Stout Brian, Bonod Nicolas

机构信息

CNRS, Aix-Marseille Université, Centrale Marseille, Institut Fresnel, UMR 7249, Campus de St Jérôme, 13397 Marseille, France.

出版信息

Sci Rep. 2013 Oct 29;3:3063. doi: 10.1038/srep03063.

Abstract

We demonstrate experimentally and theoretically that a local excitation of a single scatterer of relative dielectric permittivity ε = 6 permits to excite broad dipolar and quadrupolar electric and magnetic resonances that shape the emission pattern in an unprecedented way. By suitably positioning the feed with respect to the sphere at a λ/3 distance, this compact antenna is able to spectrally sort the electromagnetic emission either in the forward or in the backward direction, together with a high gain in directivity. Materials with ε = 6 can be found in the whole spectrum of frequencies promising Mie antennas to become an enabling technology in numbers of applications, ranging from quantum single photon sources to telecommunications.

摘要

我们通过实验和理论证明,相对介电常数ε = 6的单个散射体的局部激发能够激发宽频偶极和四极电磁共振及磁共振,以前所未有的方式塑造发射模式。通过将馈源相对于球体以λ/3的距离进行适当定位,这种紧凑型天线能够在向前或向后方向上对电磁发射进行频谱分选,同时具有高指向性增益。在整个频率范围内都能找到ε = 6的材料,这使得米氏天线有望成为从量子单光子源到电信等众多应用中的一项赋能技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28a6/3810663/661b6849dfee/srep03063-f1.jpg

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