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中红外黄铁矿超表面中的晶格米氏共振与发射率增强

Lattice Mie resonances and emissivity enhancement in mid-infrared iron pyrite metasurfaces.

作者信息

Islam Md Sakibul, Babicheva Viktoriia E

出版信息

Opt Express. 2023 Nov 20;31(24):40380-40392. doi: 10.1364/OE.505207.

DOI:10.1364/OE.505207
PMID:38041341
Abstract

High-refractive-index antennas with characteristic dimensions comparable to wavelength have a remarkable ability to support pronounces electric and magnetic dipole resonances. Furthermore, periodic arrangements of such resonant antennas result in narrow and strong lattice resonances facilitated by the lattice. We design iron pyrite antennas operating in the mid-infrared spectral range due to the material's low-energy bandgap and high refractive index. We utilize Kirchhoff's law, stating that emissivity and absorptance are equal to each other in equilibrium, and we apply it to improve the thermal properties of the iron pyrite metasurface. Through the excitation of collective resonances and manipulation of the antenna lattice's period, we demonstrate our capacity to control emissivity peaks. These peaks stem from the resonant excitation of electric and magnetic dipoles within proximity to the Rayleigh anomalies. In the lattice of truncated-cone antennas, we observe Rabi splitting of electric and magnetic dipole lattice resonances originating from the antennas' broken symmetry. We demonstrate that the truncated-cone antenna lattices support strong out-of-plane magnetic dipole lattice resonances at oblique incidence. We show that the truncated-cone antennas, as opposed to disks or cones, facilitate a particularly strong resonance and bound state in the continuum at the normal incidence. Our work demonstrates the effective manipulation of emissivity peaks in iron pyrite metasurfaces through controlled lattice resonances and antenna design, offering promising avenues for mid-infrared spectral engineering.

摘要

特征尺寸与波长相当的高折射率天线具有显著的能力来支持明显的电偶极子和磁偶极子共振。此外,这种谐振天线的周期性排列会导致由晶格促成的窄而强的晶格共振。由于材料的低能带隙和高折射率,我们设计了在中红外光谱范围内工作的黄铁矿天线。我们利用基尔霍夫定律,即在平衡状态下发射率和吸收率彼此相等,并将其应用于改善黄铁矿超表面的热性能。通过激发集体共振和操纵天线晶格的周期,我们展示了控制发射率峰值的能力。这些峰值源于靠近瑞利异常处电偶极子和磁偶极子的共振激发。在截顶圆锥天线的晶格中,我们观察到源于天线对称性破缺的电偶极子和磁偶极子晶格共振的拉比分裂。我们证明,截顶圆锥天线晶格在斜入射时支持强的面外磁偶极子晶格共振。我们表明,与圆盘或圆锥不同,截顶圆锥天线在正入射时促进了特别强的共振和连续统中的束缚态。我们的工作展示了通过可控的晶格共振和天线设计对黄铁矿超表面发射率峰值的有效操纵,为中红外光谱工程提供了有前景的途径。

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