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Tuning the Photonic Stop Bands of Nanoporous Anodic Alumina-Based Distributed Bragg Reflectors by Pore Widening

机译:通过孔扩展来调谐纳米多孔阳极氧化铝基分布式布拉格反射器的光子阻带。

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A distributed Bragg reflector based on nanoporous anodic alumina was fabricated using an innovative cyclic anodization voltage approach, which resulted in an in-depth modulation of the pore geometry and the refractive index. The effect of a pore-widening wet-etching step on the structure's photonic stop-band properties was studied. From transmittance measurements, it was shown that by changing the pore-widening time it is possible to modulate the photonic stop band in the range of visible to near infrared. With the help of a theoretical model, we were able to obtain information about the evolution with the pore widening of the material effective refractive indexes. This opens the possibility of obtaining several optoelectronic devices based on nanoporous anodic alumina.
机译:使用创新的循环阳极氧化电压方法制造了基于纳米多孔阳极氧化铝的分布式布拉格反射器,从而对孔的几何形状和折射率进行了深度调制。研究了扩孔湿法刻蚀步骤对结构光子阻带特性的影响。从透射率测量结果表明,通过改变孔扩展时间,可以在可见光至近红外范围内调节光子阻带。借助理论模型,我们能够获得有关材料有效折射率随着孔径扩大而演变的信息。这打开了获得几种基于纳米多孔阳极氧化铝的光电器件的可能性。

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