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首页> 外文期刊>Journal of Electronic Materials >Quasi-3D Perfect Absorber Based on the Self-Similar Parasitic Elements as an Optical Sensor with Tunable Attributes for Near-Infrared Application
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Quasi-3D Perfect Absorber Based on the Self-Similar Parasitic Elements as an Optical Sensor with Tunable Attributes for Near-Infrared Application

机译:基于自相似寄生元素的准基本完美吸收器作为具有可调谐属性的光学传感器,用于近红外应用

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摘要

We have designed a novel self-similar plasmonic perfect absorber with a quasi-three-dimensional (3D) shape based on parasitic elements, which is useful as a refractive index sensor for near-infrared applications. In order to achieve tunable attributes, we have applied the liquid crystal medium to provide a tunable structure which can be considered to control the absorption parameter and resonances. In fact, we have proposed a self-similar structure to obtain a multi-band structure in the range of 800-1600 nm with an absorption value up to 99.8%. The basic model is a single cross element, while each quarter is filled up by L-shaped elements by forming a tapered shape like a pyramidal in which the elements are arranged from large to small with various heights and lengths which creates a ziggurat form. So this structure can provide a quad-band absorber which we have implemented as a refractive index sensor with a much higher figure of merit (FOM) in comparison to the flat formations. For the final structure, the maximum values of the FOM and sensitivity (S) are 24,560 RIU-1 and 660 nm RIU-1, respectively.
机译:我们设计了一种基于寄生元件的准立体(3D)形状的新型自相似等离子体完美吸收器,其可用作近红外应用的折射率传感器。为了实现可调谐属性,我们已经施加了液晶介质以提供可调谐结构,可以被认为可以控制吸收参数和谐振。事实上,我们提出了一种自相似的结构,以获得800-1600nm范围内的多频带结构,吸收值高达99.8%。基本模型是单个交叉元件,而通过形成像金字塔的锥形形状,每个季度由L形元件填充,其中元件从大到小的,以较小,其各种高度和长度产生Ziggurat形式。因此,这种结构可以提供四带吸收器,其作为折射率传感器,与平坦的结构相比,具有更高的优点(FOM)的折射率传感器。对于最终结构,FOM和敏感度的最大值分别为24,560RI-1和660nm Riu-1。

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