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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A visible-near infrared wavelength-tunable metamaterial absorber based on the structure of Au triangle arrays embedded in VO2 thin film
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A visible-near infrared wavelength-tunable metamaterial absorber based on the structure of Au triangle arrays embedded in VO2 thin film

机译:基于VO2薄膜的Au三角形阵列结构的可见近红外波长音化空间吸收器

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摘要

We propose a metamaterial electromagnetic wave absorber which is aimed to achieve the wide tunability of resonance absorption peak in visible and near-infrared (NIR) regime. The metamaterial absorber consists of Au triangle nanoparticle arrays, vanadium dioxide (VO2) film dielectric layer and the gold reflective layer, and the Au triangle arrays are embedded in the VO2 film. We explore the change of resonance wavelengths affected by the thickness of the VO2 dielectric layer. When the thickness of VO2 film is 90 nm, the absorption peak achieves a large tunability of 56.2% while the VO2 undergoes a structural transition from metallic phase (m-VO2) to insulator phase (i-VO2). The large wavelength tunability can be explained by a hybrid electric resonance and magnetic resonance mode from the electromagnetic field distributions at the resonance wavelengths. The absorbers with tunable resonance wavelengths would be beneficial to the sensor and detector applications in terms of heat or light signal. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们提出了一种超材料电磁波吸收器,其旨在在可见和近红外(NIR)制度中实现共振吸收峰的广泛可调性。超材料吸收器由Au三角形纳米粒子阵列,二氧化钒(VO2)膜介电层和金反射层组成,并且均在VO2膜中嵌入Au三角形阵列。我们探讨受VO2介电层厚度影响的共振波长的变化。当VO2薄膜的厚度为90nm时,吸收峰实现在VO2经历从金属相(M-VO2)到绝缘剂相(I-VO2)的结构转变时,吸收峰值为56.2%。大波长可调性可以通过来自谐振波长的电磁场分布的混合电谐振和磁共振模式来解释。具有可调谐波长波长的吸收器将在热量或光信号方面有利于传感器和检测器应用。 (c)2017年Elsevier B.V.保留所有权利。

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