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Highly Angular Tolerant Transmission Filters for Narrow-Band Image Sensors

机译:用于窄带图像传感器的高角度耐透射滤波器

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A dielectric transmittance filter composed of subwavelength grating sandwiched between two few-layers distributed Bragg reflectors (DBRs) is proposed with the aim of being compatible with CMOS technology and to be tunable by lithographic means of the grating pattern without the need of thickness changes, in the broad spirit of metamaterials. The DBR mirrors form a Fabry-Perot (FP) cavity whose resonant frequency can be tuned by changing the effective refractive index of the cavity, here, by tailoring the in-plane filling factor of the grating. The structure has been studied and designed by performing numerical simulations using Fourier Modal Method (FMM). This filter proves to have high broad angular tolerance up to ±30?. This feature is crucial for evaluating the spectral performance of narrow-band filters especially the so-called Ambient light sensors (ALS). By analyzing the transmittance spectral distributions in the band diagram, it is found that the angular tolerance is due to coupling between the FP and the guided mode inside the cavity in analogy to resonances occurring within multimode periodic waveguides in a different context.
机译:提出了一种介电透射滤光器,其构成夹在两层分布式布拉格反射器(DBRS)之间夹在两层之间的介电透射滤光器,其目的是与CMOS技术兼容,并且通过光栅图案的光刻装置可调,而不需要厚度变化石碑的广阔精神。 DBR反射镜形成法布里 - 珀罗(FP)腔,其通过在这里通过定制光栅的平面内填充因子来改变腔的有效折射率来调节谐振频率。通过使用傅立叶模态方法(FMM)进行数值模拟来研究和设计该结构。该过滤器证明高达±30的宽角度差异很大。该特征对于评估窄带滤波器的光谱性能,特别是所谓的环境光传感器(ALS)至关重要。通过分析带图中的透射谱分布,发现角度公差是由于在不同上下文中的多模周期波导内发生的腔内的FP和引导模式之间的耦合。

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