Moritake Yuto, Tanaka Takuo
Innovative Photon Manipulation Research Team, RIKEN Center for Advanced Photonics, Wako, Saitama, 351-0198, Japan.
Metamaterials Laboratory, RIKEN Cluster for Pioneering Research, Wako, Saitama, 351-0198, Japan.
Sci Rep. 2018 Jun 13;8(1):9012. doi: 10.1038/s41598-018-27404-2.
We experimentally investigated the bi-anisotropic properties of Fano resonance in three-dimensional (3D) metamaterials. Fano resonance in 3D metamaterials arises from the interference of in-phase and anti-phase modes that originate from mode hybridization in coupled 3D split ring resonators (SRRs) with detuned resonant wavelengths. At Fano resonance, not only permittivity and permeability but also the bi-anisotropic parameter show doubly dispersive response. Manipulation of the bi-anisotropic response at Fano resonance was demonstrated through controlling the inversion symmetry of the 3D-SRRs. Improvement of inversion symmetry due to rotation of 3D-SRRs results in enhancement of magnetic response and inhibition of electric and bi-anisotropy responses at Fano resonance. Negligible electric and bi-anisotropic responses at Fano resonance were achieved due to the small radiative nature of the anti-phase mode. This bi-anisotropic Fano metamaterials with rich and tunable bi-anisotropy will extend the capabilities of new optical phenomena and broaden the applications of bi-anisotropic metamaterials.
我们通过实验研究了三维(3D)超材料中Fano共振的双各向异性特性。3D超材料中的Fano共振源于同相和反相模式的干涉,这些模式源自具有失谐共振波长的耦合3D裂环谐振器(SRR)中的模式杂化。在Fano共振时,不仅介电常数和磁导率,而且双各向异性参数都呈现双色散响应。通过控制3D-SRR的反演对称性,展示了在Fano共振时对双各向异性响应的操控。由于3D-SRR的旋转导致反演对称性的改善,从而在Fano共振时增强了磁响应并抑制了电响应和双各向异性响应。由于反相模式的小辐射特性,在Fano共振时实现了可忽略的电响应和双各向异性响应。这种具有丰富且可调双各向异性的双各向异性Fano超材料将扩展新光学现象的能力,并拓宽双各向异性超材料的应用范围。