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真空蒸发多孔硅光子干涉滤光片。

Vacuum evaporated porous silicon photonic interference filters.

作者信息

Kaminska Kate, Brown Tim, Beydaghyan Gisia, Robbie Kevin

机构信息

Department of Physics, Queen's University, Kingston, Ontario K7L 3N6, Canada.

出版信息

Appl Opt. 2003 Jul 10;42(20):4212-9. doi: 10.1364/ao.42.004212.

Abstract

Porous materials with nanometer-scale structure are important in a wide variety of applications including electronics, photonics, biomedicine, and chemistry. Recent interest focuses on understanding and controlling the properties of these materials. Here we demonstrate porous silicon interference filters, deposited in vacuum with a technique that enables continuous variation of the refractive index between that of bulk silicon and that of the ambient (n approximately 3.5 to 1). Nanometer-scale oscillations in porosity were introduced with glancing angle deposition, a technique that combines oblique deposition onto a flat substrate of glass or silicon in a high vacuum with computer control of substrate tilt and rotation. Complex refractive index profiles were achieved including apodized filters, with Gaussian amplitude modulations of a sinusoidal index variation, as well as filters with index matching antireflection regions. A novel quintic antireflection coating is demonstrated where the refractive index is smoothly decreased to that of the ambient, reducing reflection over a broad range of the infrared spectrum. Optical transmission characterstics of the filters were accurately predicted with effective medium modeling coupled with a calibration performed with spectroscopic ellipsometry.

摘要

具有纳米级结构的多孔材料在包括电子学、光子学、生物医学和化学在内的广泛应用中都很重要。最近的研究兴趣集中在理解和控制这些材料的特性上。在这里,我们展示了多孔硅干涉滤光片,它是在真空中通过一种技术沉积而成的,该技术能够使折射率在体硅和环境介质的折射率之间连续变化(n约为3.5至1)。通过掠角沉积引入了纳米级的孔隙率振荡,这是一种在高真空中将倾斜沉积到玻璃或硅的平面基板上与计算机控制基板倾斜和旋转相结合的技术。实现了复杂的折射率分布,包括变迹滤光片,其具有正弦折射率变化的高斯幅度调制,以及具有折射率匹配抗反射区域的滤光片。展示了一种新型的五次抗反射涂层,其中折射率平滑地降低到环境介质的折射率,从而在宽范围的红外光谱上减少反射。通过有效介质建模结合用光谱椭偏仪进行的校准,准确预测了滤光片的光学传输特性。

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