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Improved broadband and quasi-omnidirectional anti-reflection properties with biomimetic silicon nanostructures

机译:仿生硅纳米结构改善了宽带和准全向抗反射性能

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Nature routinely produces nanostructured surfaces with useful properties, such as the self-cleaning lotus leaf, the colour of the butterfly wing, the photoreceptor in brittlestar and the anti-reflection observed in the moth eye. Scientists and engineers have been able to mimic some of these natural structures in the laboratory and in real-world applications. Here, we report a simple aperiodic array of silicon nanotips on a 6-inch wafer with a sub-wavelength structure that can suppress the reflection of light at a range of wavelengths from the ultraviolet, through the visible part of the spectrum, to the terahertz region. Reflection is suppressed for a wide range of angles of incidence and for both s- and p-polarized light. The antireflection properties of the silicon result from changes in the refractive index caused by variations in the height of the silicon nanotips, and can be simulated with models that have been used to explain the low reflection from moth eyes. The improved anti-reflection properties of the surfaces could have applications in renewable energy and electro-optical devices for the military.
机译:大自然通常会产生具有有用特性的纳米结构表面,例如自清洁荷叶,蝴蝶翅膀的颜色,脆星中的感光体以及在蛾眼中观察到的抗反射性。科学家和工程师已经能够在实验室和实际应用中模拟其中的某些自然结构。在这里,我们报告了一个6英寸晶圆上的简单的非周期性硅纳米尖端阵列,该阵列具有亚波长结构,可以抑制从紫外线到光谱的可见光部分到太赫兹的波长范围内的光反射。地区。对于大范围的入射角以及s偏振和p偏振光,反射都得到抑制。硅的抗反射特性是由于硅纳米尖端的高度变化所引起的折射率变化而产生的,可以用已经用来解释蛾眼低反射的模型进行模拟。表面改善的抗反射性能可用于军事用途的可再生能源和电光设备中。

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