论文标题
在亚波介电谐振器中观察超波长的超级腔模式
Observation of supercavity modes in subwavelength dielectric resonators
论文作者
论文摘要
具有高折射率的介电谐振器的电磁响应由光学诱导的电和磁性MIE共振控制,从而促进光限制并增强振幅。然而,传统上仅与血浆或Epsilon-near-Zero结构相关的强度下次波长捕获,这些结构遭受了损失。最近,提出了一种替代定位机制,以将光捕获在单个亚波长的光学谐振器中,其在超级腔模式的状态下具有高质量的因子。在这里,我们介绍了辐射频率范围内亚波长陶瓷谐振器中超级腔模式的实验观察。我们通过实验证明,通过精确调整谐振器的尺寸,可以实现超级腔模式的状态,从而导致质量因子的巨大增长达到了最高1.25x10^4的实验值,仅受介质材料损失的限制。我们揭示了分别通过偶极子和平面波有效地通过近场和远场有效地激发超级腔模式。在这两种情况下,超级腔模式通过Fano共振和辐射模式的特征性特征清楚地表现出来。我们的工作为光子学和放射物理学中未来紧凑的实用设备铺平了道路。
Electromagnetic response of dielectric resonators with high refractive index is governed by optically induced electric and magnetic Mie resonances facilitating confinement of light with the amplitude enhancement. However, strong subwavelength trapping of light was associated traditionally only with plasmonic or epsilon-near-zero structures which however suffer from losses. Recently, an alternative localization mechanism was proposed to trap light in individual subwavelength optical resonators with a high quality factor in the regime of a supercavity mode. Here, we present the experimental observation of the supercavity modes in subwavelength ceramic resonators in the radiofrequency range. We demonstrate experimentally that the regime of supercavity mode can be achieved via precise tuning of the resonator's dimensions resulting in a huge growth of the quality factor reaching the experimental values up to 1.25x10^4, being limited only by material losses in dielectrics. We reveal that the supercavity modes can be excited efficiently by both near- and far-fields by means of dipole sources and plane waves, respectively. In both the cases, the supercavity mode manifests itself clearly via characteristic peculiarities of the Fano resonance and radiation patterns. Our work paves the way for future compact practical devices in photonics and radiophysics.