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Design of a Tunable Fabry-Perot Interferometer/Photodiode (FPI/PD) Spectral Image Sensor in Visible Wavelength Range

机译:可见光波长范围内可调法布里-珀罗干涉仪/光电二极管(FPI / PD)光谱图像传感器的设计

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The design of a Fabry Perot Interferometer/photodiode (FPI/PD) spectral image sensor in the visible wavelength range using CMOS compatible processes is described. Interdigitated PIN PDs with various geometries were fabricated on Si and tested. The spectral response shows that a quantum efficiency of nearly 80% is achieved by the PD in the visible wavelength range. The quantum efficiency increases with increasing gap-width to pitch-width ratio, and the increase is more significant at shorter wavelengths. The optical performance of FPIs with distributed Bragg reflector mirrors and Ag thin film mirrors are modeled and compared. We find that FPIs with Ag mirrors are more suitable for the applications described here. A transmittance of 0.4 can be achieved using 40 nm Ag mirrors. The effects of the mechanical support of the Ag layer and the PD insulating layer on the transmittance of the FPI are investigated theoretically. After adding the supporting layer or insulating layer, the transmittance changes periodically with the thickness of the respective layers. The changing period and amplitude is a function of the refractive index of the respective layer.
机译:描述了使用CMOS兼容工艺在可见光波长范围内的法布里珀罗干涉仪/光电二极管(FPI / PD)光谱图像传感器的设计。在Si上制造并测试了具有各种几何形状的交叉指型PIN PD。光谱响应表明,PD在可见波长范围内可达到近80%的量子效率。量子效率随着间隙宽度与节距宽度之比的增加而增加,并且在较短的波长处增加更为明显。对具有分布式布拉格反射镜和Ag薄膜镜的FPI的光学性能进行了建模和比较。我们发现带有银镜的FPI更适合此处描述的应用。使用40 nm Ag镜可实现0.4的透射率。理论上研究了Ag层和PD绝缘层的机械支撑对FPI透射率的影响。添加支撑层或绝缘层后,透射率随着各层的厚度而周期性地变化。变化的周期和幅度是相应层的折射率的函数。

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