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首页> 外文期刊>Plasmonics >Polarization-Independent Narrowband Near-Perfect Absorption Based on One-Dimension Embedded Aluminum Grating
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Polarization-Independent Narrowband Near-Perfect Absorption Based on One-Dimension Embedded Aluminum Grating

机译:基于一维嵌入式铝光栅的极化无关窄带近乎完美的吸收

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摘要

In the past, the polarization-insensitive absorption is realized mainly employing the two-dimensional periodic structure of fourfold rotational symmetry, which greatly increases the manufacturing complexity and cost. Here, we present the numerical design of a polarization-independent near-perfect absorber incorporating one-dimensional embedded aluminum grating. The absorption peaks near 99% at 520-nm wavelength for different polarization angles are achieved. The underlying mechanism associated with the resonance is attributed to the magnetic polariton resonance and the cavity-mode resonance for TM and TE polarization, respectively, and further explained by the inductor-capacitor circuit model and the eigen equation of cavity mode. Furthermore, the effects of geometrical parameters of the nano-cavity on the absorption performance are discussed. The proposed structure may provide a new way to achieve polarization-independent absorption with one-dimensional meta-surface, which has broad applications in plasmonic sensors, photo-detectors, and so on.
机译:在过去,实现极化不敏感吸收,主要采用四倍旋转对称的二维周期性结构,这大大提高了制造复杂性和成本。在这里,我们介绍了一种独立于偏光的近乎完美吸收器的数值设计,其包含一维嵌入铝光栅。实现了在520nm波长以进行不同偏振角的520nm波长接近99%的吸收峰。与谐振相关的底层机构归因于磁极化极性谐振和用于TM和TE偏振的腔模式共振,并进一步由电感 - 电容器电路模型和腔模式的特征等式解释。此外,讨论了纳米腔的几何参数对吸收性能的影响。所提出的结构可以提供一种新的方式来实现与一维元表面的偏振无关的吸收,这在等级传感器,光检测器等中具有广泛的应用。

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