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Broadband polarization-independent resonant light absorption using ultrathin plasmonic super absorbers

机译:使用超薄等离子体超吸收器的宽带偏振无关共振光吸收

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Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes such as absorption, emission and refraction at the nanoscale. Considerable recent research has focused on energy absorption processes, and plasmonic nanostructures have been shown to enhance the performance of photovoltaic and thermophotovoltaic cells. Although reducing metallic losses is a widely sought goal in nanophotonics, the design of nanostructured 'black' super absorbers from materials comprising only lossless dielectric materials and highly reflective noble metals represents a new research direction. Here we demonstrate an ultrathin (260 nm) plasmonic super absorber consisting of a metal–insulator–metal stack with a nanostructured top silver film composed of crossed trapezoidal arrays. Our super absorber yields broadband and polarization-independent resonant light absorption over the entire visible spectrum (400–700 nm) with an average measured absorption of 0.71 and simulated absorption of 0.85. Proposed nanostructured absorbers open a path to realize ultrathin black metamaterials based on resonant absorption.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:共振等离子体和超材料结构允许控制基本的光学过程,例如纳米级的吸收,发射和折射。最近的大量研究集中在能量吸收过程上,等离激元纳米结构已显示出可增强光伏和热光伏电池的性能。尽管减少金属损耗是纳米光子学中一个广为追求的目标,但是由仅包含无损介电材料和高反射性贵金属的材料设计纳米结构“黑色”超级吸收体仍是一个新的研究方向。在这里,我们演示了一种超薄(260 nm)等离子体激元吸收体,该吸收体由金属-绝缘体-金属叠层组成,纳米结构的顶部银膜由交叉的梯形阵列组成。我们的超级吸收体在整个可见光谱(400–700 nm)内产生宽带和偏振无关的共振光吸收,平均测得的吸收率为0.71,模拟吸收为0.85。提出的纳米结构吸收体为通过共振吸收实现超薄黑色超材料开辟了道路。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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