首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Characterization of Silver Halide Fiber Optics and Hollow Silica Waveguides for Use in the Construction of a Mid-Infrared Attenuated Total Reflection Fourier Transform Infrared (ATR FT-IR) Spectroscopy Probe
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Characterization of Silver Halide Fiber Optics and Hollow Silica Waveguides for Use in the Construction of a Mid-Infrared Attenuated Total Reflection Fourier Transform Infrared (ATR FT-IR) Spectroscopy Probe

机译:用于构造中红外衰减全反射傅立叶变换红外(ATR FT-IR)光谱探针的卤化银光纤和空心二氧化硅波导的表征

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摘要

Advances in fiber optic materials have allowed for the construction of fibers and waveguides capable of transmitting infrared radiation. An investigation of the transmission characteristics associated with two commonly used types of infrared-transmitting fibers/waveguides for prospective use in a fiber/waveguide-coupled attenuated total internal reflection (ATR) probe was performed. Characterization of silver halide polycrystalline fiber optics and hollow silica waveguides was done on the basis of the transmission of infrared light using a conventional fiber optic coupling accessory and an infrared microscope. Using the fiber optic coupling accessory, the average percent transmission for three silver halide fibers was 18.1 ± 6.1% relative to a benchtop reflection accessory. The average transmission for two hollow waveguides (HWGs) using the coupling accessory was 8.0 ± 0.3%. (Uncertainties in the relative percent transmission represent the standard deviations.) Reduced transmission observed for the HWGs was attributed to the high numerical aperture of the coupling accessory. Characterization of the fibers/waveguides using a zinc selenide lens objective on an infrared microscope indicated 24.1 ± 7.2% of the initial light input into the silver halide fibers was transmitted. Percent transmission obtained for the HWGs was 98.7 ± 0.1%. Increased transmission using the HWGs resulted from the absence or minimization of insertion and scattering losses due to the hollow air core and a better-matched numerical aperture. The effect of bending on the transmission characteristics of the fibers/waveguides was also investigated. Significant deviations in the transmission of infrared light by the solid-core silver halide fibers were observed for various bending angles. Percent transmission greater than 98% was consistently observed for the HWGs at the bending angles. The combined benefits of high percent transmission, reproducible instrument responses, and increased bending tolerance indicated HWGs should be preferred in the construction of a fiber/waveguide-coupled ATR probe.
机译:光纤材料的进步使得能够构造能够传输红外辐射的光纤和波导。对与两种常用类型的红外传输光纤/波导相关的传输特性进行了研究,这些光纤/波导有望用于光纤/波导耦合的衰减全内反射(ATR)探头中。卤化银多晶光纤和中空二氧化硅波导的表征是使用常规的光纤耦合附件和红外显微镜在红外光的透射基础上进行的。使用光纤耦合附件,相对于台式反射附件,三种卤化银纤维的平均透射百分比为18.1±6.1%。使用耦合附件的两个空心波导(HWG)的平均透射率为8.0±0.3%。 (相对百分数透射率的不确定性代表标准偏差。)HWG的透射率降低归因于耦合附件的高数值孔径。在红外显微镜上使用硒化锌透镜物镜对纤维/波导进行表征,结果表明,输入到卤化银纤维中的初始光的24.1±7.2%已透射。 HWG的传输百分比为98.7±0.1%。使用空心工作组增加了传输,这是由于空心空心和更好匹配的数值孔径而导致插入损耗和散射损耗的缺失或最小化所致。还研究了弯曲对光纤/波导传输特性的影响。对于各种弯曲角度,观察到由固芯卤化银纤维在红外光的透射中的显着偏差。对于HWG,在弯曲角度始终观察到大于98%的透射率。高传输率,可再现的仪器响应以及增加的弯曲容忍度等综合优势表明,在光纤/波导耦合ATR探头的结构中,应首选HWG。

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