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Solar absorption measurements of stratospheric OH in the UV with a Fourier-transform spectrometer

机译:用傅立叶变换光谱仪测量平流层OH在紫外线中的太阳吸收

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摘要

We performed solar absorption measurements of OH in the LTV using a Fourier-transform spectrometer (FTS). The experiments were carried out in the high Arctic at Ny-#lesund (79 °N, 12 °E) during the summer of 1996. We accomplished the analysis in two ways: (11 by studying single solar-absorption spectra recorded in the middle of the solar disk and (2) by utilizing the Doppler shift of two spectra, recorded on the east and west sides of the solar disk. The results of both analysis methods agree and give total columns of approximately 6×10↑(13) molecules cm↓(-2) for solar zenith angles of 60°. To find out the main noise contribution in the spectra, we compared the measured and calculated signal-to-noise ratios (SNR's). During clear-sky conditions the photon noise determines the total SNR. However, because a FTS is extremely sensitive to source fluctuations, conditions that were already slightly cloudy increased the scintillation noise, preventing OH analysis. The noise contribution caused by the instrumental sampling process itself was found to be negligible; even through two sampling positions had to be interpolated between the laser zero crossings. # 1997 Optical Society of America
机译:我们使用傅立叶变换光谱仪(FTS)对LTV中的OH进行了太阳吸收测量。实验于1996年夏季在Ny-#lesund(79°N,12°E)的高北极地区进行。我们通过两种方式完成了分析:(11通过研究中间记录的单个太阳吸收光谱(2)利用太阳光谱东,西两面记录的两个光谱的多普勒频移,两种分析方法的结果相符,总列数约为6×10↑(13)分子太阳天顶角为60°时为cm↓(-2),为找出光谱中的主要噪声贡献,我们比较了测得的和计算出的信噪比(SNR)在晴朗的天空条件下,光子噪声决定了但是,由于FTS对信号源波动非常敏感,因此本来就已经有些混浊的情况会增加闪烁噪声,从而无法进行OH分析,但仪器采样过程本身造成的噪声影响却可以忽略不计;甚至通过两次采样率ns必须在激光过零之间进行内插。 #1997美国眼镜学会

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