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Multipole lattice effects in high refractive index metasurfaces

机译:高折射率元敷料中的多极晶格效应

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摘要

In this Perspective, we outline the recent progress, primary achievements, and further directions in the development of high refractive index nanostructures and metasurfaces. In particular, we review the role of multipole lattice effects in resonant properties of underlying nanostruc-tures and nanophotonic elements in detail. Planar optical designs with efficient light control at the nanoscale can be engineered based on photonic lattices that operate in the translational regime between two and three dimensions. Such transdimensional lattices include 3D-engi-neered nanoantennas supporting multipole Mie resonances and arranged in the 2D arrays to harness collective effects in the nanostructure. Lattice effects in the periodic nanoparticle arrays have recently attracted a lot of attention as they enable not only spectrally narrow resonant features but also resonance position tuning over a broad range. The recent results indicate that different nanoparticle multipoles not only produce resonant spectral features but are also involved in the cross-multipole coupling, and these effects need to be accounted for in photonic designs. Multipole lattice phenomena provide an effective way to control nanoparticle resonances, facilitate excitation of additional multipoles through a cross-multipole coupling, and enable light localization in planar photonic elements. We review different effects related to the same- and cross-multipole interactions in the arrays. Both infinite and finite arrays, as well as lattices of complex-shape nanoparticles, which allow out-of-plane multipole excitations, are considered.
机译:在这种观点中,我们概述了最近的进步,初级成果以及高折射率纳米结构和元胶卷的进一步方向。特别是,我们详细审查了多极晶格效应对底层纳米杆状物和纳秒元件的共振性质的作用。纳米级具有高效光控制的平面光学设计可以基于光子晶格设计,它们在两个和三维之间的平移状态下操作。这种转模晶格包括支撑多极MIE共振的3D-Engi-Neered纳米环节,并布置在2D阵列中以在纳米结构中线束集体效果。周期性纳米粒子阵列中的晶格效应最近引起了很多关注,因为它们不仅能够频谱窄的谐振特征,而且在宽范围内调整的共振位置。最近的结果表明,不同的纳米颗粒多池不仅产生共振光谱特征,而且还涉及交叉多极耦合,并且需要在光子设计中考虑这些效果。多极晶格现象提供一种控制纳米颗粒共振的有效方法,便于通过交叉多极耦合激发附加的多孔,并使平面光子元件中的光局部化。我们审查了与阵列中的相同和交叉多极交互相关的不同效果。无限和有限的阵列以及允许平面外络激励的复杂形状纳米颗粒的晶格。

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  • 来源
    《Journal of Applied Physics 》 |2021年第4期| 040902.1-040902.21| 共21页
  • 作者单位

    Department of Electrical and Computer Engineering University of New Mexico Albuquerque New Mexico 87131 USA;

    Institute of Quantum Optics Leibniz Universitaet Hannover 30167 Hannover Germany Moscow Institute of Physics and Technology 9 Institutsky Lane Dolgoprudny 141700 Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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