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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Coupled electric and magnetic dipole formulation for planar arrays of particles: Resonances and bound states in the continuum for all-dielectric metasurfaces
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Coupled electric and magnetic dipole formulation for planar arrays of particles: Resonances and bound states in the continuum for all-dielectric metasurfaces

机译:用于平面颗粒阵列的耦合电和磁性偶极配方:全电介质元件连续脉冲中的共振和结合状态

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摘要

The optical properties of infinite planar array of scattering particles, metasurfaces and metagratings. are attracting special attention lately for their rich phenomenology, including both plasmonic and high-refractive-index dielectric meta-atoms with a variety of electric and magnetic resonant responses. Herein we derive a coupled electric and magnetic dipole analytical formulation to describe the reflection and transmission of such periodic arrays, including specular and diffractive orders, valid in the spectral regimes where only dipolar multipoles are needed. The two-dimensional lattice Green function is rewritten in terms of a one-dimensional (chain) version that fully converges in the complex frequency plane and can be easily calculated. Modes emerging as poles of such lattice Green function can be extracted, as evidenced by calculating resonances and bound states in the continuum for an array of Si spheres. This formulation can be applied to investigate a wealth of plasmonic, all-dielectric, and hybrid metasurfaces and metagratings of interest throughout the electromagnetic spectrum.
机译:散射颗粒,弥孔裂缝和比例的无限平面阵列的光学性质。最近吸引了特别的注意力,包括具有多种电动和磁共振反应的等离子体和高折射率介电元原子。这里,我们得出耦合电和磁性偶极分析制剂,以描述这种周期阵列的反射和传输,包括镜面和衍射令,在仅需要双极多元化的光谱方面有效。在复杂频率平面中完全收敛的一维(链)版本,重写二维格子绿色功能,并且可以容易地计算。可以提取作为这种格子绿色功能的极点呈现的模式,如通过计算连续体中的阵列的共振和绑定状态来证明为Si球体的阵列。该配方可以应用于研究整个电磁谱的丰富等离子体,全电介质和杂化和杂种元胶和杂种胶囊和杂种比代代。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第12期|125411.1-125411.10|共10页
  • 作者单位

    Institute de Estructura de la Materia (IEM-CSIC) Consejo Superior de Investigaciones Cienttficas Serrano 121 28006 Madrid. Spain;

    Donostia International Physics Center DIPC Paseo Manuel de Lardizabal 4 20018 Donostia San Sebastian Spain;

    Donostia International Physics Center DIPC Paseo Manuel de Lardizabal 4 20018 Donostia San Sebastian Spain;

    Institute de Estructura de la Materia (IEM-CSIC) Consejo Superior de Investigaciones Cienttficas Serrano 121 28006 Madrid. Spain;

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