研究 760 纳米波段的硫化氢高分辨率光谱

IF 0.9 Q4 OPTICS
O. V. Naumenko, S. S. Vasilchenko, O. M. Lyulin, A. A. Marinina, V. I. Perevalov
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引用次数: 0

摘要

摘要 在 10、20 和 30 托的三个压力下记录了硫化氢在 12 950-13 300 cm-1 范围内的室温空腔环降光谱(CRDS),其吸收系数的灵敏度约为 3 × 10-11 cm-1。对这些光谱进行了分析。从这些光谱中获取了线的位置和强度。利用有效算子方法对这些光谱进行了理论模拟。将测量到的线位置和强度与变分计算得到的值进行了比较。发现计算结果(Azzam A.A.A.、Yurchenko S.N.、Tennyson J.、Naumenko O.V.Exomol 线表 XVI:A hot line list for H2S // Mon.Not.R. Astron.Soc. 2016.V. 460.P. 4063-4074) 以及观测到的线位置和强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Investigation of the Hydrogen Sulfide High Resolution Spectra in the 760 nm Region

Investigation of the Hydrogen Sulfide High Resolution Spectra in the 760 nm Region

Investigation of the Hydrogen Sulfide High Resolution Spectra in the 760 nm Region

Room temperature cavity ring-down spectra (CRDS) of hydrogen sulfide were recorded at three pressures of 10, 20, and 30 Torr in the 12 950–13 300 cm–1 range with the sensitivity on the order of 3 × 10–11 cm–1 in terms of absorption coefficient. The analysis of these spectra was performed. The line positions and intensities were retrieved from these spectra. The theoretical simulation of these spectra was performed within the method of effective operators. The comparison of the measured line positions and intensities to the values obtained within variational calculation was done. The considerable difference was found between calculated (Azzam A.A.A., Yurchenko S.N., Tennyson J., Naumenko O.V. Exomol line lists XVI: A hot line list for H2S // Mon. Not. R. Astron. Soc. 2016. V. 460. P. 4063–4074) and observed line positions and intensities.

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来源期刊
CiteScore
2.40
自引率
42.90%
发文量
84
期刊介绍: Atmospheric and Oceanic Optics  is an international peer reviewed journal that presents experimental and theoretical articles relevant to a wide range of problems of atmospheric and oceanic optics, ecology, and climate. The journal coverage includes: scattering and transfer of optical waves, spectroscopy of atmospheric gases, turbulent and nonlinear optical phenomena, adaptive optics, remote (ground-based, airborne, and spaceborne) sensing of the atmosphere and the surface, methods for solving of inverse problems, new equipment for optical investigations, development of computer programs and databases for optical studies. Thematic issues are devoted to the studies of atmospheric ozone, adaptive, nonlinear, and coherent optics, regional climate and environmental monitoring, and other subjects.
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