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用于微波频率电磁发射工程的球形布拉格谐振器的实验表征。

Experimental characterization of Spherical Bragg Resonators for electromagnetic emission engineering at microwave frequencies.

作者信息

García-Puente Yalina, Laurin Jean-Jacques, Kashyap Raman

机构信息

Department of Engineering Physics, Poly-Grames Research Centre, Polytechnique Montreal, 2900 Édouard-Montpetit, Montreal, QC, H3T 1J4, Canada.

Department of Electrical Engineering, Poly-Grames Research Centre, Polytechnique Montreal, 2900 Édouard-Montpetit, Montreal, QC, H3T 1J4, Canada.

出版信息

Sci Rep. 2023 Nov 22;13(1):20532. doi: 10.1038/s41598-023-47059-y.

Abstract

This work reports experimental investigation and numerical validation of millimeter-sized Spherical Bragg Resonators (SBRs) fabricated using 3D printing technology. The frequency dependencies of the reflection and transmission coefficients were analyzed, and eigenfrequency values were calculated to examine the density of photonic states in air/PLA-polylactide SBRs, showing the appearance of an eigenmode and an increase in the local density of states in the core of a defect cavity. A decay rate enhancement of [Formula: see text] was obtained for a dipole placed in the core of the defect SBR. The study also investigated the influence of the source position on the resonator's electromagnetic wave energy. Scattering efficiencies up to order twelve of the multipole electric and magnetic contribution in a 10-layer SBR were calculated to validate the presence of the resonant modes observed in the scattering measurements performed for parallel and perpendicular polarizations. The results demonstrate that SBRs can act as omnidirectional cavities to enhance or inhibit spontaneous emission processes by modifying the density of electromagnetic states compared to free space. This finding highlights the potential of SBRs engineering spontaneous electromagnetic emission processes in various applications, including dielectric nanoantennas, optoelectronics devices, and quantum information across the entire electromagnetic spectrum.

摘要

这项工作报道了使用3D打印技术制造的毫米级球形布拉格谐振器(SBR)的实验研究和数值验证。分析了反射系数和透射系数的频率依赖性,并计算了本征频率值,以研究空气/聚乳酸(PLA)-聚丙交酯SBR中的光子态密度,结果显示出本征模的出现以及缺陷腔核心处的局域态密度增加。对于置于缺陷SBR核心处的偶极子,获得了[公式:见原文]的衰减率增强。该研究还调查了源位置对谐振器电磁波能量的影响。计算了10层SBR中多极电和磁贡献的高达十二阶的散射效率,以验证在平行和垂直极化的散射测量中观察到的谐振模的存在。结果表明,与自由空间相比,SBR可作为全向腔,通过改变电磁态密度来增强或抑制自发发射过程。这一发现突出了SBR在各种应用中工程化自发电磁发射过程的潜力,包括介电纳米天线、光电器件以及整个电磁频谱范围内的量子信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce7d/10665359/cba747180e26/41598_2023_47059_Fig1_HTML.jpg

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