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Novel, Spatially Distributed Porous Si Optical Bandpass Filter

机译:新型,空间分布的多孔硅光学带通滤波器

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To assist the growth of the telecommunication sector, new types of optical components such as those based on optical interference filter technology" are critical. Existing technologies based on thin-film processing for production of optical communications filters have rapidly advanced. Although the Fabry-Perot bandpass filters made by deposition of alternate layers with high- and low- refractive index have a broad rejection band and a narrow passband, this technique does not allow for the control of filter parameters such as specification and adjustment of the transmitted wavelength at any place across the surface of the filter. The new approach discussed in the paper is directed toward the anodization of silicon to fabricate not only multilayer optical filters with a uniform passband across the field of view but also specially designed passbands at any single point in the field of view of the optical system. In particular, the realization and characterization of spatially distributed filters made of porous silicon are presented. These filters are able to select various passbands in the visible and IR regions. The filters were fabricated on p~+ and p - type doped substrates. By varying the electrode configuration on the backside of wafer and the applied potential during electrochemical etching, the desired spatially distributed filter can be formed. The impact of wafer resistivity on filter parameters is discussed.
机译:为了帮助电信领域的发展,新型光学组件至关重要,例如基于光学干涉滤光片技术的光学组件。现有的基于薄膜加工的光学通信滤光片生产技术已经迅速发展。尽管法布里-珀罗(Fabry-Perot)通过沉积具有高折射率和低折射率的交替层而制成的带通滤光片具有较宽的抑制带和较窄的通带,该技术无法控制滤光片参数,例如规格和调整透射光的波长。本文讨论的新方法旨在对硅进行阳极氧化,以制造不仅在视场上具有均匀通带的多层光学滤光片,而且还可以在视场中的任何单个点制造经过特殊设计的通带光学系统,特别是空间分布的实现和特征介绍了由多孔硅制成的过滤器。这些滤波器能够在可见光和红外区域选择各种通带。滤光片是在p〜+和p-型掺杂衬底上制作的。通过改变晶片背面上的电极结构和电化学蚀刻过程中施加的电势,可以形成所需的空间分布的滤波器。讨论了晶片电阻率对滤波器参数的影响。

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