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Michelson interferometer with porch swing bearing for portable FTIR spectrometer

机译:带有门廊摆动轴承的迈克尔逊干涉仪,用于便携式FTIR光谱仪

摘要

The interferometer for low resolution portable Fourier Transform middle infrared spectrometer was developed and studied experimentally. The final aim was a concept for a commercial prototype. Because of the portability, the interferometer should be compact sized and insensitive to the external temperature variations and mechanical vibrations. To minimise the size and manufacturing costs, Michelson interferometer based on plane mirrors and porch swing bearing was selected and no dynamic alignment system was applied. The driving motor was a linear voice coil actuator to avoid mechanical contact of the moving parts. The driving capability for low mirror driving velocities required by the photoacoustic detectors was studied. In total, four versions of such an interferometer were built and experimentally studied.The thermal stability during the external temperature variations and the alignment stability over the mirror travel were measured using the modulation depth of the wide diameter laser beam. Method for estimating the mirror tilt angle from the modulation depth was developed to take account the effect from the non-uniform intensity distribution of the laser beam. The spectrometer stability was finally studied also using the infrared radiation. The latest interferometer was assembled for the middle infrared spectrometer with spectral range from 750 cm−1 to 4500 cm−1. The interferometer size was (197 × 95 × 79) mm3 with the beam diameter of 25 mm. The alignment stability as the change of the tilt angle over the mirror travel of 3 mm was 5 μrad, which decreases the modulation depth only about 0.7 percent in infrared at 3000 cm−1. During the temperature raise, the modulation depth at 3000 cm−1 changed about 1 . . . 2 percentage units per Celsius over short term and even less than 0.2 percentage units per Celsius over the total temperature raise of 30 °C. The unapodised spectral resolution was 4 cm−1 limited by the aperture size. The best achieved signal to noise ratio was about 38 000:1 with commercially available DLaTGS detector. Although the vibration sensitivity requires still improving, the interferometer performed, as a whole, very well and could be further developed to conform all the requirements of the portable and stable spectrometer.
机译:低分辨率便携式傅里叶变换中红外光谱仪的研制。最终目标是为商业原型设计一个概念。由于便携性,干涉仪的尺寸应紧凑并且对外部温度变化和机械振动不敏感。为了最小化尺寸和降低制造成本,选择了基于平面镜和门廊摆动轴承的迈克尔逊干涉仪,并且未使用动态对准系统。驱动马达是线性音圈致动器,以避免运动部件的机械接触。研究了光声检测器所需的低反射镜驱动速度的驱动能力。总的来说,建立了四个版本的干涉仪并进行了实验研究。使用宽直径激光束的调制深度测量了外部温度变化期间的热稳定性以及镜面行进期间的对准稳定性。开发了一种根据调制深度估算镜面倾斜角的方法,以考虑到激光束强度分布不均匀的影响。最后还使用红外辐射研究了光谱仪的稳定性。为中红外光谱仪组装了最新的干涉仪,光谱范围从750 cm-1到4500 cm-1。干涉仪尺寸为(197×95×79)mm3,光束直径为25 mm。对准稳定性随着倾斜角度在3 mm镜面行程上的变化为5μrad,在3000 cm-1的红外线中,调制深度仅降低约0.7%。在温度升高期间,在3000 cm-1处的调制深度大约变化1。 。 。短期内每摄氏度2个百分点单位,在总温度升高30°C时甚至低于每摄氏度0.2个百分点单位。未切趾的光谱分辨率为4 cm-1,受孔径大小限制。使用市售DLaTGS检测器可获得的最佳信噪比约为38 000:1。尽管仍然需要提高振动灵敏度,但干涉仪的整体性能还是很好的,并且可以进一步发展以符合便携式稳定光谱仪的所有要求。

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    Välikylä Tuomas;

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  • 年度 2014
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