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Proposal of AAA-battery-size one-shot ATR Fourier spectroscopic imager for on-site analysis: Simultaneous measurement of multi-components with high accuracy

机译:用于现场分析的AAA电池大小一射ATR傅里叶焦点图像仪的提议:高精度同时测量多组分

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For simultaneous measurement of multi-components on-site like factories, the ultra-compact (diameter: 9[mm], length: 45 [mm], weight: 200[g]) one-shot ATR (Attenuated Total Reflection) Fourier spectroscopic imager was proposed. Because the proposed one-shot Fourier spectroscopic imaging is based on spatial-phase-shift interferometer, interferograms could be obtained with simple optical configurations. We introduced the transmission-type relative-inclined phase-shifter, that was constructed with a cuboid prism and a wedge prism, onto the optical Fourier transform plane of infinity corrected optical systems. And also, small light-sources and cameras in the mid-infrared light region, whose size are several millimeter on a side, are essential components for the ultra-compact spectroscopic configuration. We selected the Graphite light source (light source area: 1.7×1.7[mm], maker: Hawkeye technologies) whose radiation factor was high. Fortunately, in these days we could apply the cost-effective 2-dimensional light receiving device for smartphone (e.g. product name: LEPTON, maker: FLIR, price: around 400USD). In the case of alcoholic drinks factory, conventionally workers measure glucose and ethanol concentrations by bringing liquid solution back to laboratories every day. The high portable spectroscopy will make it possible to measure multi-components simultaneously on manufacturing scene. But we found experimentally that absorption spectrum of glucose and water and ethanol were overlapped each other in near infrared light region. But for mid-infrared light region, we could distinguish specific absorption peaks of glucose (@10.5[μm]) and ethanol (@11.5[μm]) independently from water absorption. We obtained standard curve between absorption (@9.6[μm]) and ethanol concentration with high correlation coefficient 0.98 successfully by ATR imaging-type 2-dimensional Fourier spectroscopy (wavelength resolution: 0.057[μm]) with the graphite light source (maker: Hawkeye technologies, type: IR-75).
机译:用于同时测量现场的多组分,超细压(直径:9 [mm],长度:45 [mm],重量:200 [g])单次ATR(减振全反射)傅里叶光谱成像仪提出。因为所提出的单次傅里叶光谱成像基于空间相移干涉仪,可以通过简单的光学配置获得干扰图。我们介绍了用长方体棱镜和楔形棱镜构造的透射型相对倾斜移相器,在无限远校正光学系统的光学傅里叶变换平面上。而且,中红外光区域中的小型光源和相机,其尺寸在侧面上的数量是几毫米,是用于超紧凑型光谱构造的必要组件。我们选择了石墨光源(光源面积:1.7×1.7 [mm],制造商:Hawkeye Technologies),其辐射因子高。幸运的是,在这些时代,我们可以应用于智能手机的成本效益的二维光接收设备(例如,产品名称:Lepton,Maker:Flir,价格:左右400usd)。在酒精饮料厂的情况下,常规工人通过每天将液体解决方案恢复实验室来测量葡萄糖和乙醇浓度。高便携式光谱可以使可以在制造场景上同时测量多组分。但我们发现实验发现,在近红外光区彼此重叠葡萄糖和水和乙醇的吸收光谱。但对于中红外光区域,我们可以独立于吸水性区分葡萄糖(@10.5μm])和乙醇(@11.5μm)的特定吸收峰。通过ATR成像二维傅立叶光谱(波长分辨率:0.057 [μm])与石墨光源(Maker:Hawkeye)成功地获得了高相关系数0.98之间的吸收(@ 9.6 [μm])和乙醇浓度的标准曲线。技术,类型:IR-75)。

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