Published May 10, 2018
| Version 1
Dataset
Open
Deprecated - VAMDC extraction with query token = mecasda:86283556-1a6a-4fd3-b513-de792c32edd4:get
Authors/Creators
Description
Deprecated because the file upload was corrupted.
This is a dataset extracted from http://vamdc.icb.cnrs.fr/mecasda-12.07/tap/ VAMDC node.
Query originating this dataset: query=select species;
Data source version: 1
Data format: XSAMS 12.07
Query uuid in VAMDC query store: 9ca8e9a9-b6d7-4f5e-a510-13cb8bf4b759
Files
Files
(3.2 kB)
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md5:fd749cd08da40687a0e9441fe58f8287
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3.2 kB | Download |
Additional details
Related works
- Is previous version of
- https://zenodo.org/record/1620695#.W_5gIxDZCR0 (URL)
References
- N.N. (2018).
- Albert,S. and Bauerecker,S. and Boudon,V. and Brown,L.R. and Champion,J.-P. and Loete,M. and Nikitin,A. and Quack,M. (2009). Global analysis of the high resolution infrared spectrum of methane 12CH4 in the region from 0 to 4800 cm-1. Chemical Physics.
- Boudon,V. and Pirali,O. and Roy,P. and Brubach,J.-B. and Manceron,L. and Vander Auwera,J. (2010). The high-resolution far-infrared spectrum of methane at the SOLEIL synchrotron. Journal of Quantitative Spectroscopy and Radiative Transfer.
- Nikitin,A. and Boudon,V. and Wenger,C. and Albert,S. and Brown,L.R. and Bauerecker,S. and Quack,M. (2013). High resolution spectroscopy and first global analysis of the Tetradecad region of methane 12CH4. Phys. Chem. Chem. Phys.
- Jourdanneau,E. and Chaussard,F. and Saint-Loup,R. and Gabard,T. and Berger,H. (2005). The methane Raman spectrum from 1200 to 5500 cm-1: A first step toward temperature diagnostic using methane as a probe molecule in combustion systems. Journal of Molecular Spectroscopy.
- El Hilali,A. and Wenger,C. and Boudon,V. and Loete,M. (2010). C3v Top Data System (C3vTDS) software for spectrum simulation of XY3Z symmetric-top molecules using the O(3) superset C infinity v superset C3v group chain. Journal of Quantitative Spectroscopy and Radiative Transfer.
- Wishnow,E.H. and Orton,G.S. and Ozier,I. and Gush,H.P. (2007). The distortion dipole rotational spectrum of CH4: A low temperature far-infrared study. Journal of Quantitative Spectroscopy and Radiative Transfer.
- Roche,C. and Champion,J.P. (1991). Analysis of Dyad-Dyad transitions of 12CH4 and 13CH4. Canadian Journal of Physics.
- Brown,L.R. and Loete,M. and Hilico,J.C. (1989). Linestrengths of the nu-2 and nu-4 bands of 12CH4 and 13CH4. Journal of Molecular Spectroscopy.
- Jouvard,J.M. and Lavorel,B. and Champion,J.P. and Brown,L.R. (1991). Preliminary-analysis of the Pentad of 13CH4 from Raman and infrared-spectra. Journal of Molecular Spectroscopy.
- Fejard,L. and Champion,J.P. and Jouvard,J.M. and Brown,L.R. and Pine,A.S. (2000). The intensities of methane in the 3-5 mu m region revisited. Journal of Molecular Spectroscopy.
- OUARDI,O. and Hilico,J.C. and Loete,M. and Brown,L.R. (1996). The hot bands of methane between 5 and 10 mu m. Journal of Molecular Spectroscopy.
- Gabard,T. (2013). Calculated line broadening parameters for methane perturbed by diatomic molecules. Journal of Molecular Spectroscopy.
- Chesnokova,T.Yu. and Boudon,V. and Gabard,T. and Gribanov,K.G. and Firsov,K. and Zakharov,V.I. (2011). Near-infrared radiative transfer modelling with different CH4 spectroscopic databases to retrieve atmospheric methane total amount. Journal of Quantitative Spectroscopy and Radiative Transfer.
- Amyay,B. and Louviot,M. and Pirali,O. and Georges,R. and Vander Auwera,J. and Boudon,V. (2016). Global analysis of the high temperature infrareed emission spectrum of 12CH4 in the dyad (nu-2/nu-4) region. Journal of Chemical Physics.