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High-information time-resolved Fourier transform spectroscopy at work

机译:高信息时间分辨傅里叶变换光谱

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摘要

The first instrumental setup, to our knowledge, that is capable of recording in a few hours the time-resolved Fourier transform (TRFT) interferograms of gas-phase spectra that cover several thousands of inverse centimeters with spectral- and time-resolution limits that are equal, at best, to 2.5×10~(-3) cm~(-1) and 2 ns, respectively, is reported. It was developed on the stepping-mode Connes-type interferometer of the Laboratoire de Photophysique Moleculaire Universite de Paris Sud. Also, for the first time, to our knowledge, these high-resolution TRFT spectra, illustrated with the Doppler-limited emission spectra of the N_(2) transitions (B-A) and (B'-B) between 5500 and 11 000 cm~(-1) and of the atomic Ar lines between 1800 and 4000 cm~(-1), are recorded in the infrared spectral range. To obtain identical results that have the same signal-to-noise ratio, we should have increased the recording time of our unique previous high-information TRFT spectra by approximately 50,000. In other words, one hour is now long enough to obtain what would previously have required six years to record.
机译:据我们所知,第一个仪器设置可以在几小时内记录气相光谱的时间分辨傅立叶变换(TRFT)干涉图,该干涉图覆盖数千个反厘米,且光谱和时间分辨率极限为据报道,分别等于2.5×10〜(-3)cm〜(-1)和2 ns。它是在巴黎南大学光物理分子实验室的步进模式Connes型干涉仪上开发的。同样,据我们所知,这些高分辨率的TRFT光谱首次以5500至11000 cm〜的N_(2)跃迁(BA)和(B'-B)的多普勒限定发射光谱进行了说明。 (-1)和1800至4000 cm〜(-1)之间的原子Ar线记录在红外光谱范围内。为了获得具有相同信噪比的相同结果,我们应该将以前独特的高信息TRFT光谱的记录时间增加大约50,000。换句话说,现在一个小时就足够获得以前需要记录六年的时间。

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