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Theoretical investigations on microwave Fano resonances in 3D-printable hollow dielectric resonators

机译:可3D打印的空心介电共振器中的微波Fano共振的理论研究

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摘要

High-index dielectric structures have recently been studied intensively for Mie resonances at optical frequencies. These dielectric structures can enable extreme light manipulation, similar to that which has been achieved with plasmonic nanostructures. In the microwave region, dielectric resonators and metamaterials can be fabricated directly using 3D printing, which is advantageous for fabricating structurally complicated 3D geometries. It is therefore especially suitable for the fabrication of subwavelength structures. Here we report theoretical investigations on microwave Fano resonances in 3D-printable dielectric materials and structures. In particular, we propose and analyse 3D-printable, hollow, dielectric resonators with relatively low refractive indices, which exhibit sharp Fano resonances. We can control the interaction between bright and dark modes in a coupled dielectric particle pair by adjusting the inner-hole size, and thus we can increase the radiative Q factors further. We also find that Fano resonances in these hollow dielectric resonators are very sensitive to an index change in the surrounding medium, which could be useful for long-distance environmental sensing. New possibilities and opportunities are opening up with the rapid development of 3D-printing technologies. Our findings and the detailed investigations reported here can provide useful guidelines for future photonic devices based on 3D-printable materials and structures.
机译:最近已经对高折射率介电结构进行了深入研究,以研究光频率下的Mie共振。这些电介质结构可以实现极端的光控制,类似于等离激元纳米结构所实现的。在微波区域中,可以使用3D打印直接制造介电共振器和超材料,这对于制造结构复杂的3D几何形状是有利的。因此,它特别适合于亚波长结构的制造。在这里,我们报告了有关3D可打印介电材料和结构中微波Fano共振的理论研究。特别是,我们提出并分析了折射率较低的3D可打印的中空介质谐振器,这些谐振器表现出尖锐的Fano谐振。我们可以通过调整内孔的大小来控制耦合介电粒子对中亮模式和暗模式之间的相互作用,从而可以进一步增加辐射Q因子。我们还发现,在这些中空介质谐振器中的Fano谐振对周围介质的折射率变化非常敏感,这对于长距离环境传感很有用。随着3D打印技术的飞速发展,新的可能性和机遇正在打开。我们的发现和此处报告的详细研究可以为基于3D可打印材料和结构的未来光子设备提供有用的指导。

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