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Broadband omnidirectional antireflection coating based on subwavelength surface Mie resonators

机译:基于亚波长表面米氏谐振器的宽带全向减反射涂层

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Reflection is a natural phenomenon that occurs when light passes the interface between materials with different refractive index. In many applications, such as solar cells or photodetectors, reflection is an unwanted loss process. Many ways to reduce reflection from a substrate have been investigated so far, including dielectric interference coatings, surface texturing, adiabatic index matching and scattering from plasmonic nanoparticles. Here we present an entirely new concept that suppresses the reflection of light from a silicon surface over a broad spectral range. A two-dimensional periodic array of subwavelength silicon nanocylinders designed to possess strongly substrate-coupled Mie resonances yields almost zero total reflectance over the entire spectral range from the ultraviolet to the near-infrared. This new antireflection concept relies on the strong forward scattering that occurs when a scattering structure is placed in close proximity to a high-index substrate with a high optical density of states.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:反射是自然现象,当光通过具有不同折射率的材料之间的界面时发生。在许多应用中,例如太阳能电池或光电探测器,反射是一种有害的损耗过程。迄今为止,已经研究了许多减少从基材反射的方法,包括介电干涉涂层,表面纹理,绝热指数匹配和等离子体纳米颗粒的散射。在这里,我们提出了一个全新的概念,该概念可以抑制光在较大光谱范围内从硅表面反射。亚波长硅纳米圆柱体的二维周期阵列设计为具有强的基体耦合的Mie共振,在从紫外线到近红外的整个光谱范围内,总反射率几乎为零。这种新的抗反射概念依赖于强散射光,当散射结构紧邻具有高光密度态的高折射率基板放置时,会发生这种强烈的正向散射。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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