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基于纳米结构锗阵列的可见光下偏振无关且高效的宽带光学吸收器。

Polarization-independent and high-efficiency broadband optical absorber in visible light based on nanostructured germanium arrays.

作者信息

Zhao Jiancun, Yu Xiaochang, Yang Xiaoming, Th Tee Clarence Augustine, Yuan Weizheng, Yu Yiting

出版信息

Opt Lett. 2019 Feb 15;44(4):963-966. doi: 10.1364/OL.44.000963.

Abstract

A broadband optical absorber based on the nanostructured germanium (Ge) film composed of single-sized circular nanodisk-nanohole arrays is proposed, which demonstrates high efficiency, strong polarization independence, and large viewing angle. Due to the electric and magnetic resonance absorption modes excited by the nanostructure arrays in highly lossy Ge film, the absorber obtains a high absorptivity, reaching above 90% over the full visible wavelength, and it can be maintained well at a large viewing angle over ±50°. Based on the geometrical symmetry, the absorber is proved to be polarization independent. Moreover, the simple single-sized nanostructure within a certain size tolerance decreases the design and fabrication complexity. The structural configuration with a slight Ge sidewall formed in the nanofabrication process could enhance the overall light absorption. These results indicate that the proposed broadband absorber has great potential in various applications such as anti-reflective coating and perfect cloaking.

摘要

提出了一种基于由单尺寸圆形纳米盘-纳米孔阵列组成的纳米结构锗(Ge)薄膜的宽带光学吸收体,该吸收体具有高效率、强偏振无关性和大视角。由于纳米结构阵列在高损耗Ge薄膜中激发的电和磁共振吸收模式,该吸收体具有高吸收率,在整个可见波长范围内达到90%以上,并且在±50°以上的大视角下能很好地保持。基于几何对称性,证明该吸收体是偏振无关的。此外,在一定尺寸公差内的简单单尺寸纳米结构降低了设计和制造的复杂性。在纳米制造过程中形成的带有轻微Ge侧壁的结构配置可以增强整体光吸收。这些结果表明,所提出的宽带吸收体在抗反射涂层和完美隐身等各种应用中具有巨大潜力。

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