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Narrow band pass filter using Birefringence film and quarter-wave film

机译:使用双折射膜和四分之一波膜的窄带通滤器

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While a pixel in a color image has three colorimetric information of RGB, that in a spectral image contains full spectral information, several tens times more information compared to the color image. Hence, the spectral image is widely applicable in biology, material science, and environmental science. Although several methods for spectral image acquisition have been suggested to date, those methods are expensive, bulky, or slow in actual device. In this work, we designed a novel type of tunable narrow band-pass filter using rotatable polarizer, quarter-wave plate, and birefringence films. Different from the conventional Lyot-Ohman type filter, we do not use a liquid crystal layer. The selection of wavelength is made by rotating the polarizer in our filter set, and adopted a piezoelectric rotational actuator for that. We simulated to find the optimal conditions of the filter set, and finally, fabricated a filter module. The minimum band width was 5 nm, which is suitable for usual spectral imaging and can be reduced further if necessary, and the wavelength of light passing through the filter set was continuously selectable. After setting the filter in a microscope, we obtained a spectral image set for a bio sample that contained full spectrum information in each pixel. Using image processing, we could demonstrate to read out the spectral information for any selected position.
机译:虽然彩色图像中的像素具有三个RGB的比色信息,但是在光谱图像中包含完全频谱信息,与彩色图像相比,多个信息的数量多。因此,光谱图像广泛适用于生物学,材料科学和环境科学。虽然已经提出了迄今为止的频谱图像采集方法,但是实际设备中的这些方法昂贵,笨重或慢。在这项工作中,我们设计了一种使用可旋转偏振器,四分之一波片和双折射膜的新型可调窄带通滤波器。与传统的Lyot-Ohman型过滤器不同,我们不使用液晶层。通过在过滤器组中旋转偏振器并采用压电旋转致动器来制造波长的选择。我们模拟找到滤波器集的最佳条件,最后制造了一个过滤器模块。最小带宽为5nm,适用于通常的光谱成像,并且如果需要,可以进一步减小,并且通过过滤器组的光的波长连续选择。在显微镜中设置滤波器之后,我们获得了用于在每个像素中包含全频谱信息的生物样本的光谱图像。使用图像处理,我们可以证明读出任何所选位置的光谱信息。

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