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超薄膜 Pancharatnam-Berry 超表面,具有最大的交叉偏振效率。

Ultrathin pancharatnam-berry metasurface with maximal cross-polarization efficiency.

机构信息

Department of Microwave Engineering, Harbin Institute of Technology, Harbin, 150001, China.

出版信息

Adv Mater. 2015 Feb 18;27(7):1195-200. doi: 10.1002/adma.201405047. Epub 2014 Dec 28.

Abstract

Novel ultrathin dual-functional metalenses are proposed, fabricated, tested, and verified in the microwave regime for the first time. The significance is that their anomalous transmission efficiency almost reaches the theoretical limit of 25%, showing a remarkable improvement compared with earlier ultrathin metasurface designs with less than 5% coupling efficiency. The planar metalens proposed empowers significant reduction in thickness, versatile focusing behavior, and high transmission efficiency simultaneously.

摘要

首次在微波波段提出、制作、测试和验证了新型超薄双功能金属透镜。其重要意义在于,它们的异常透射效率几乎达到了 25%的理论极限,与之前的小于 5%耦合效率的超薄超表面设计相比有显著提高。所提出的平面金属透镜能够同时实现显著的厚度减小、多功能聚焦行为和高传输效率。

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