首页> 外文会议>Next-Generation Spectroscopic Technologies IX >Built-in hyperspectral camera for smartphone in visible, near-infrared and middle-infrared lights region (first report): Trial products of beans-size Fourier-spectroscopic line-imager and feasibility experimental results of middle infrared spectroscopic i
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Built-in hyperspectral camera for smartphone in visible, near-infrared and middle-infrared lights region (first report): Trial products of beans-size Fourier-spectroscopic line-imager and feasibility experimental results of middle infrared spectroscopic i

机译:可见光,近红外光和中红外光区域中用于智能手机的内置高光谱相机(第一份报告):豆大小的傅立叶光谱线成像仪的试用产品和中红外光谱仪的可行性实验结果

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We had already proposed and reported the little-finger size hyperspectral-camera that was able to be applied to visible and infrared lights. The proposed method has been expected to be mounted on smartphones for healthcare sensors, and unmanned air vehicles such as drones for antiterrorism measures or environmental measurements. In this report, we will mention the trial product of the thumb size apparatus whose lens diameter was 5[mm]. The proposed Fourier spectroscopic imager is a kind of wavefront-division and common-path phase-shift interferometers. We installed the relative inclined phase-shifter onto optical Fourier transform plane of infinity corrected optical systems. The infinity corrected optical systems was configured with an objective lens and a cylindrical imaging lens. The relative inclined phase-shifter, what was made from a thin glass less than 0.3[mm] thick, had the wedge-prism and cuboid-glass region, because half surface of a thin glass was polished at an oblique angle of around 1[deg.]. The collimated half flux of objective beams derived from single-bright points on objective surface penetrate through the wedge prism and the cuboid glass respectively. These two beams are interfered each other and form the infererogram as spatial fringe patterns. In this case, the horizontal axis on 2-dimensional light receiving device is assigned to the amount of phase-shift. And also the vertical axis is assigned to the imaging coordinates on a line view field. Thus, by installing thin phase-shifter onto optical Fourier transform plane, the line spectroscopic imager, what obtains 1 dimensional spectral character distributions, were able to be realized.
机译:我们已经提出并报告了可用于可见光和红外光的小手指大小的高光谱相机。预期该提议的方法将安装在用于医疗保健传感器的智能手机上,以及用于反恐措施或环境测量的无人机等无人机上。在本报告中,我们将提及镜片直径为5 [mm]的拇指型仪器的试验产品。提出的傅立叶光谱成像仪是一种波前分频和共径相移干涉仪。我们将相对倾斜的移相器安装到无限校正光学系统的光学傅立叶变换平面上。无限远校正光学系统配置有物镜和圆柱成像透镜。由厚度小于0.3 [mm]的薄玻璃制成的相对倾斜移相器具有楔形棱镜和长方体玻璃区域,因为薄玻璃的半表面以大约1 [度]。从物镜表面的单个亮点得到的物镜光束的准直半通量分别穿过楔形棱镜和长方体玻璃。这两个光束相互干涉,并形成干涉图作为空间条纹图案。在这种情况下,将二维光接收装置上的水平轴分配给相移量。并且垂直轴也被分配给线视场上的成像坐标。因此,通过将薄的移相器安装在光学傅立叶变换平面上,能够实现获得一维光谱特征分布的线光谱成像器。

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