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首页> 外文期刊>Journal of nano research >Optical Losses in Hybrid Microcavity Based in Porous Semiconductors and its Application as Optic Chemical Sensor
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Optical Losses in Hybrid Microcavity Based in Porous Semiconductors and its Application as Optic Chemical Sensor

机译:基于多孔半导体的混合微腔光学损耗及其在光学化学传感器中的应用

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摘要

In this study the experimental and theoretical optical analysis of a hybrid microcavity (HM) based in porous silicon (PS) and nanoporous anodic alumina (NAA) are presented. The microcavity was centered in the visible region at 760 nm. Distributed Bragg reflector (DBR) was obtained using galvanostatic anodizing method and while NAA by the two-step anodization technique. From SEM micrographs the HM different regions are observed. HM optical characterization in the visible region was done, considering two different light sources, point and non-point respectively. These results reveal a decrease in the quality factor (Q) from 350 to 190 when the source is exchanged; this behavior has been mainly attributed to the light scattering at NAA. Furthermore, it was possible to study Q change, through transmittance simulation using the transfer matrix and Landau-Lifshitz-Looyenga theoretical methods. When a point light source is used, there are no optical losses making possible to sense 1% of analyte resulting in a 0.29 nm redshift of the resonant peak. According with these results we propose to apply the HM as chemical optic sensor.
机译:在这项研究中,提出了基于多孔硅(PS)和纳米多孔阳极氧化铝(NAA)的混合微腔(HM)的实验和理论光学分析。微腔位于760 nm可见区域的中心。分布式布拉格反射器(DBR)是使用恒电流阳极氧化方法获得的,而NAA是通过两步阳极氧化技术获得的。从SEM显微照片观察到HM的不同区域。分别考虑点和非点两个不同的光源,完成了可见光区域的HM光学表征。这些结果表明,更换光源时,品质因数(Q)从350降低到190;这种行为主要归因于NAA处的光散射。此外,可以通过使用传递矩阵和Landau-Lifshitz-Looyenga理论方法进行的透射率模拟来研究Q变化。使用点光源时,不会发生光学损耗,无法感测1%的分析物,从而导致共振峰出现0.29 nm的红移。根据这些结果,我们建议将HM用作化学光学传感器。

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