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大面积宽带近完美吸收的薄硒化物薄膜与金纳米粒子耦合。

Large-Area Broadband Near-Perfect Absorption from a Thin Chalcogenide Film Coupled to Gold Nanoparticles.

机构信息

School of Optoelectronic Engineering and Instrumentation Science , Dalian University of Technology , Dalian 116024 , China.

Singapore University of Technology and Design , 8 Somapah Road , 487372 , Singapore.

出版信息

ACS Appl Mater Interfaces. 2019 Feb 6;11(5):5176-5182. doi: 10.1021/acsami.8b21452. Epub 2019 Jan 28.

Abstract

Perfect absorbers that can efficiently absorb electromagnetic waves over a broad spectral range are crucial for energy harvesting, light detection, and optical camouflage. Recently, perfect absorbers based on a metasurface have attracted intensive attention. However, high-performance metasurface absorbers in the visible spectra require strict fabrication tolerances, and this is a formidable challenge. Moreover, fabricating subwavelength meta-atoms requires a top-down approach, thus limiting their scalability and spectral applicability. Here, we introduce a plasmonic nearly perfect absorber that exhibits a measured polarization-insensitive absorptance of ∼92% across the spectral region from 400 to 1000 nm. The absorber is realized via a one-step self-assembly deposition of 50 nm gold (Au) nanoparticle (NP) clusters onto a 35 nm-thick GeSbTe (GST225) chalcogenide film. An excellent agreement between the measured and theoretically simulated absorptance was found. The coalescence of the lossy GST225 dielectric layer and high density of localized surface plasmon resonance modes induced by the randomly distributed Au NPs play a vital role in obtaining the nearly perfect absorptance. The exceptionally high absorptance together with large-area high-throughput self-assembly fabrication demonstrates their potential for industrial-scale manufacturability and consequential widespread applications in thermophotovoltaics, photodetection, and sensing.

摘要

完美的吸收体可以在宽光谱范围内高效吸收电磁波,对于能量收集、光检测和光学伪装至关重要。最近,基于超表面的完美吸收体引起了人们的极大关注。然而,高性能的可见光光谱中的超表面吸收体需要严格的制造容差,这是一个巨大的挑战。此外,制造亚波长的meta-atoms 需要自上而下的方法,从而限制了它们的可扩展性和光谱适用性。在这里,我们介绍了一种等离子体近完美吸收体,它在 400nm 至 1000nm 的光谱范围内表现出约 92%的偏振不敏感吸收率。该吸收体是通过将 50nm 厚的金(Au)纳米粒子(NP)簇一步自组装沉积在 35nm 厚的锗锑碲(GST225)硫属化物薄膜上来实现的。测量吸收率和理论模拟吸收率之间存在极好的一致性。损耗性 GST225 介电层的合并以及由随机分布的 Au NPs 引起的局域表面等离子体共振模式的高密度在获得近完美吸收率方面起着至关重要的作用。异常高的吸收率和大面积的高通量自组装制造证明了它们在工业规模制造方面的潜力,并可能在热光伏、光检测和传感等领域得到广泛应用。

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