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CMOS-integrated geometrically tunable optical filter

机译:CMOS集成几何可调谐滤光片

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摘要

Commonly, optical filters consist of pigments on glass or of many stapled interference layers. In both cases, they are not applied on CMOS devices within the fab line, but through further processing, which also involves additional costs. In addition to this, pigment-based filters do not allow to perform a spectral analysis, which needs multichannel-based sensors, i.e. more than four different filters. Two methods for producing optical filters in the CMOS-line with different sensitivities are presented here. The first one consists of a structured metal layer embedded in oxide, whose working principle bases on plasmonics. The second one is a Fabry-Perot resonator with patterned cavity deposited with CMOS technology on top of the device. Both filters are characterized by a response which can be tuned by the geometric factors used in their patterning, allowing mutlichanneling. The filters have been simulated, realized and measured. The results are presented.
机译:通常,滤光片由玻璃上的颜料或许多装订的干涉层组成。在这两种情况下,它们都不会应用在生产线内的CMOS器件上,而是通过进一步处理而应用,这也涉及额外的成本。除此之外,基于颜料的滤光片不允许执行光谱分析,这需要基于多通道的传感器,即超过四个不同的滤光片。本文介绍了两种在CMOS线上生产具有不同灵敏度的滤光片的方法。第一个由嵌入氧化物中的结构化金属层组成,其工作原理基于等离子体。第二个是Fabry-Perot谐振器,该谐振器具有在器件顶部沉积有CMOS技术的图案化腔。这两个滤波器的特征都是响应,可以通过在其构图中使用的几何因素来调节响应,从而实现多通道化。滤波器已经过模拟,实现和测量。显示结果。

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