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在具有精细结构的光学衍射中从二维光子晶体到介电超表面的转变。

Transition from two-dimensional photonic crystals to dielectric metasurfaces in the optical diffraction with a fine structure.

作者信息

Rybin Mikhail V, Samusev Kirill B, Lukashenko Stanislav Yu, Kivshar Yuri S, Limonov Mikhail F

机构信息

Ioffe Institute, St. Petersburg 194021, Russia.

ITMO University, Department of Photonics of Dielectrics and Semiconductors, St. Petersburg 197101, Russia.

出版信息

Sci Rep. 2016 Aug 5;6:30773. doi: 10.1038/srep30773.

Abstract

We study experimentally a fine structure of the optical Laue diffraction from two-dimensional periodic photonic lattices. The periodic photonic lattices with the C4v square symmetry, orthogonal C2v symmetry, and hexagonal C6v symmetry are composed of submicron dielectric elements fabricated by the direct laser writing technique. We observe surprisingly strong optical diffraction from a finite number of elements that provides an excellent tool to determine not only the symmetry but also exact number of particles in the finite-length structure and the sample shape. Using different samples with orthogonal C2v symmetry and varying the lattice spacing, we observe experimentally a transition between the regime of multi-order diffraction, being typical for photonic crystals to the regime where only the zero-order diffraction can be observed, being is a clear fingerprint of dielectric metasurfaces characterized by effective parameters.

摘要

我们通过实验研究了二维周期性光子晶格的光学劳厄衍射精细结构。具有C4v正方形对称性、正交C2v对称性和六边形C6v对称性的周期性光子晶格由通过直接激光写入技术制造的亚微米介电元件组成。我们观察到来自有限数量元件的惊人强光学衍射,这提供了一个绝佳工具,不仅可以确定有限长度结构中粒子的对称性,还能确定其确切数量以及样品形状。使用具有正交C2v对称性的不同样品并改变晶格间距,我们通过实验观察到从光子晶体典型的多阶衍射 regime 到仅能观察到零阶衍射 regime 的转变,这是由有效参数表征的介电超表面的清晰特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe69/4974556/8aab9f7dd259/srep30773-f2.jpg

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