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Plasmonic angle sensitive pixel for digital imagers

机译:用于数字成像仪的等离子角度敏感像素

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A new method for making angle sensitive pixels (ASP) is proposed and simulated. Although the angle-sensitive properties of plasmonic gratings are well known, this is the first component to provide the necessary additional features to allow that sensitivity to be exploited for making ASP. Our ASP comprises an optical plasmonic grating (a lateral momentum filter) that is aperture-coupled to an interference filter. Together, the two filters will only pass light within a narrow range of wavelengths, that is arriving from within a narrow range of angles. To illustrate the concept, an example pixel is simulated using finite difference time domain. The metal is modelled as aluminium so as to be compatible with CMOS foundries. The unoptimised example shows 6 per cent transmission of 525 nm light arriving at ¿¿¿15 degrees from the normal. The full-width-half maximum of the pass band is 100 nm, suggesting a 3 degree acceptance angle. Smaller acceptance angles can be obtained by altering the grating profile. Possible applications include adding depth perception to a lensed imaging system, and imaging without lenses, although the details of these schemes are outside the scope of this Paper.
机译:提出并仿真了一种新的角度敏感像素制作方法。尽管等离激元光栅的角度敏感特性是众所周知的,但这是第一个提供必要附加功能的组件,以允许利用该敏感度来制作ASP。我们的ASP包括一个光等离子体激元光栅(横向动量滤波器),该光栅通过孔径耦合到干涉滤波器。这两个滤光器一起只能使在狭窄的波长范围内的光通过,这些波长是在狭窄的角度范围内到达的。为了说明这一概念,使用有限差分时域对一个示例像素进行了仿真。该金属建模为铝,以便与CMOS铸造厂兼容。未优化的示例显示525 nm光的6%透射率与法线成15度。通带的半峰全宽为100 nm,表明接受角为3度。通过改变光栅轮廓可以获得较小的接收角。可能的应用包括为镜头成像系统增加深度感知,以及不使用镜头进行成像,尽管这些方案的细节不在本文讨论范围之内。

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