Электронная библиотека (репозиторий) Томского государственного университета
Campargue, Alain

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Source: Journal of Quantitative Spectroscopy and Radiative Transfer. 2018. Vol. 213. P. 169-177
Type: статьи в журналах
Date: 2018
Description: The methane absorption spectrum is studied at 297 K and 80 K in the center of the Tetradecad between 5695 and 5850 cm−1. The spectra are recorded by differential absorption spectroscopy (DAS) with a n ... More
Source: Journal of Quantitative Spectroscopy and Radiative Transfer. 2017. Vol. 187. P. 414-425
Type: статьи в журналах
Date: 2017
Description: The room temperature absorption spectrum of 18O enriched carbon dioxide has been recorded by very high-sensitivity Cavity Ring Down spectroscopy between 6977 and 7918 cm−1 (1.43−1.26 μm). The achieved ... More
Source: Physical chemistry chemical physics. 2016. Vol. 18, № 1. P. 176-189
Type: статьи в журналах
Date: 2016
Description: A detailed study of methane spectra in the highly congested icosad range of 6280–7800 cm−1 has been performed using global variational calculations derived from accurate ab initio potential energy and ... More
Source: Journal of Quantitative Spectroscopy and Radiative Transfer. 2016. Vol. 168. P. 207-216
Type: статьи в журналах
Date: 2016
Description: Accurate rovibrational analysis of the lower part of the Icosad 12CH4 spectrum in the 6539–6800 cm−1 region is reported. The analysis uses the WKLMC experimental line list previously obtained in Greno ... More
Source: Journal of Quantitative Spectroscopy and Radiative Transfer. 2016. Vol. 176. P. 62-69
Type: статьи в журналах
Date: 2016
Description: In a recent work (Karlovets et al., 2016 [1]), we reported the measurement and rovibrational assignments of more than 3300 transitions belonging to 64 bands of five nitrous oxide isotopologues (14N216 ... More
Source: Journal of molecular spectroscopy. 2016. Vol. 326. P. 115-121
Type: статьи в журналах
Date: 2016
Description: The 13CH4 absorption spectrum has been recorded at 296 K and 80 K in the Icosad range between 6600 and 7700 cm−1. The achieved noise equivalent absorption of the spectra recorded by differential absor ... More
Source: Journal of Quantitative Spectroscopy and Radiative Transfer. 2016. Vol. 184. P. 233-240
Type: статьи в журналах
Date: 2016
Description: The absorption of carbon dioxide is very weak near 2.3 µm which makes this transparency window of particular interest for the study of Venus’ lower atmosphere. As a consequence of the weakness of the ... More
Source: The Twenty-fourth Colloquium on High Resolution Molecular Spectroscopy, Dijon, France, August 24–28, 2015. Dijon, 2015. P. 184-185
Type: статьи в сборниках
Date: 2015
Source: XVIII Simposium and School on High Resolusion Molecular Spectroscopy HighRus-2015, June 30 – July 4, 2015 : Abstracts of Reports. Tomsk, 2015. P. 107
Type: статьи в сборниках
Date: 2015
Source: The Twenty-fourth Colloquium on High Resolution Molecular Spectroscopy, Dijon, France, August 24–28, 2015. Dijon, 2015. P. 370
Type: статьи в сборниках
Date: 2015
Source: XVIII Simposium and School on High Resolusion Molecular Spectroscopy HighRus-2015, June 30 – July 4, 2015 : Abstracts of Reports. Tomsk, 2015. P. 63
Type: статьи в сборниках
Date: 2015
Source: The Twenty-fourth Colloquium on High Resolution Molecular Spectroscopy, Dijon, France, August 24–28, 2015. Dijon, 2015. P. 406
Type: статьи в сборниках
Date: 2015
Source: Journal of Quantitative Spectroscopy and Radiative Transfer. 2015. Vol. 161. P. 203-214
Type: статьи в журналах
Date: 2015
Source: Journal of Quantitative Spectroscopy and Radiative Transfer. 2015. Vol. 152. P. 84-93
Type: статьи в журналах
Date: 2015
Description: The present contribution is devoted to the analysis of three extremely weak A-type bands of 16O3 recorded near 7686, 7739 and 7860 cm−1i.e. only a few % below the dissociation limit, D0, at about 8560 ... More
Source: XVIII Simposium and School on High Resolusion Molecular Spectroscopy HighRus-2015, June 30 – July 4, 2015 : Abstracts of Reports. Tomsk, 2015. P. 64
Type: статьи в сборниках
Date: 2015
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