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用于消色差虚拟整形的空间和光谱工程化自旋轨道相互作用。

Spatially and spectrally engineered spin-orbit interaction for achromatic virtual shaping.

作者信息

Pu Mingbo, Zhao Zeyu, Wang Yanqin, Li Xiong, Ma Xiaoliang, Hu Chenggang, Wang Changtao, Huang Cheng, Luo Xiangang

机构信息

State Key Laboratory of Optical Technologies on Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Science, Chengdu 610209, China.

出版信息

Sci Rep. 2015 May 11;5:9822. doi: 10.1038/srep09822.

Abstract

The geometries of objects are deterministic in electromagnetic phenomena in all aspects of our world, ranging from imaging with spherical eyes to stealth aircraft with bizarre shapes. Nevertheless, shaping the physical geometry is often undesired owing to other physical constraints such as aero- and hydro-dynamics in the stealth technology. Here we demonstrate that it is possible to change the traditional law of reflection as well as the electromagnetic characters without altering the physical shape, by utilizing the achromatic phase shift stemming from spin-orbit interaction in ultrathin space-variant and spectrally engineered metasurfaces. The proposal is validated by full-wave simulations and experimental characterization in optical wavelengths ranging from 600 nm to 2800 nm and microwave frequencies in 8-16 GHz, with echo reflectance less than 10% in the whole range. The virtual shaping as well as the revised law of reflection may serve as a versatile tool in many realms, including broadband and conformal camouflage and Kinoform holography, to name just a few.

摘要

在我们这个世界的所有方面,从球形眼睛成像到形状怪异的隐形飞机,物体的几何形状在电磁现象中都是确定的。然而,由于诸如隐形技术中的空气动力学和流体动力学等其他物理限制,塑造物理几何形状往往是不可取的。在这里,我们证明,通过利用超薄空间变体和光谱工程超表面中自旋轨道相互作用产生的消色差相移,可以在不改变物理形状的情况下改变传统的反射定律以及电磁特性。该提议通过全波模拟和在600纳米至2800纳米的光波长以及8 - 16吉赫兹的微波频率下的实验表征得到验证,在整个范围内回波反射率小于10%。虚拟成形以及修正后的反射定律可能在许多领域中作为一种通用工具,包括宽带和共形伪装以及菲涅耳全息术等等。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14f1/4426594/514d2a3813cc/srep09822-f1.jpg

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