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对称加速光束生成全介质超表面。

Symmetric accelerating beam generation all-dielectric metasurfaces.

作者信息

Ahmed Hammad, Rahim Arbab Abdur, Ali Muhammad Mahmood, Maab Husnul

机构信息

Ghulam Ishaq Khan Institute of Engineering Sciences and Technology Swabi 23460 Pakistan

Optical Fibre Sensors Research Centre, Department of Electronics and Computer Engineering, University of Limerick Limerick V94 T9PX Ireland.

出版信息

RSC Adv. 2020 Aug 17;10(51):30282-30288. doi: 10.1039/d0ra04584e.

Abstract

Traditionally, symmetric accelerating beam (SAB) generation requires bulky optical components, which hinder the miniaturization of optical systems. Recently, metasurfaces, which are composed of sub-wavelength features, have provided a captivating boulevard for the realization of ultra-thin and flat optical devices. Therefore, for the first time, we design and simulate all-dielectric metasurfaces based on an optical caustic approach to generate highly efficient SABs by tailoring the phase of an incident wave. The designed metasurface utilizes spatial distribution of optimized NbO nano-rods on SiO substrate to perform the phase modulation. In contrast with conventional accelerating beams, the generated SABs can follow any predefined propagation trajectory with unique features, such as symmetric intensity profile, autofocusing, and thin needle-like structure in their intensity profile. In addition to this, these beams have also shown the ability to avoid obstacles, placed in the direction of propagation of main lobes. We believe that these beams can be useful in applications, including Raman spectroscopy and fluorescent imaging, and multiparticle manipulation.

摘要

传统上,对称加速光束(SAB)的产生需要庞大的光学组件,这阻碍了光学系统的小型化。近来,由亚波长特征组成的超表面为实现超薄和扁平光学器件提供了一条引人入胜的途径。因此,我们首次基于光焦散方法设计并模拟了全介质超表面,通过调整入射波的相位来产生高效的SAB。所设计的超表面利用SiO衬底上优化的NbO纳米棒的空间分布来进行相位调制。与传统加速光束相比,所产生的SAB可以遵循任何具有独特特征的预定义传播轨迹,例如对称强度分布、自聚焦以及强度分布中的细针状结构。除此之外,这些光束还展示出能够避开位于主瓣传播方向上的障碍物的能力。我们相信这些光束可用于包括拉曼光谱学、荧光成像以及多粒子操纵等应用中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ebc/9056301/5546d96d32c9/d0ra04584e-f1.jpg

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