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Acquisition of Mid-Infrared Spectra from Nonrepeatable Events with Sub-100-μs Temporal Resolution Using Planar Array Infrared Spectroscopy

机译:使用平面阵列红外光谱仪从时间间隔小于100μs的不可重复事件中获取中红外光谱

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摘要

A novel method is presented that is capable of collecting time-resolved vibrational spectroscopic information with sub-100-μs temporal resolution. Unlike previous step scan FT-IR approaches, the phenomena under study do not necessarily need to be repeatable. The methodology described herein is based on the planar array infrared (PA-IR) technique, which utilizes a spectrograph for wavelength dispersion and a mid-infrared focal plane array (FPA) detector for simultaneous detection of multiple wavelengths. Unlike previous PA-IR approaches, a rolling mode FPA is employed. This unique data readout mode, where data are read out of the array two rows at a time, is exploited to generate increased temporal resolution. The capabilities of this technique are demonstrated using the example of the electric field-induced Freedericksz transition of a nematic liquid crystal. It is shown that the orientational dynamics of a single transition can be tracked over a spectral range of 154 cm~(-1) with a temporal resolution of 99.17 μs while requiring a total experimental time of less than 1 s.
机译:提出了一种新颖的方法,该方法能够以低于100μs的时间分辨率收集时间分辨的振动光谱信息。与先前的步进扫描FT-IR方法不同,所研究的现象不一定需要可重复。本文描述的方法基于平面阵列红外(PA-IR)技术,该技术利用光谱仪进行波长色散,并使用中红外焦平面阵列(FPA)检测器同时检测多个波长。与以前的PA-IR方法不同,采用滚动模式FPA。利用这种独特的数据读取模式,可以一次从阵列中两行读取数据,以产生更高的时间分辨率。以向列型液晶的电场诱导的Freedericksz跃迁为例来证明该技术的功能。结果表明,单个跃迁的取向动力学可以在154 cm〜(-1)的光谱范围内跟踪,时间分辨率为99.17μs,而总的实验时间少于1 s。

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