Published March 3, 2025
| Version 2025-03-03
Dataset
Open
VAMDC extraction with identifier = c39655d3-8169-4e0f-acc3-0fffbb01d764
Authors/Creators
Description
This is a dataset extracted from http://basecoltap2015.vamdc.org/12_07/ VAMDC node.
Query originating this dataset: query=select * where ( target.inchikey = 'ldifhdjqddmhhq-uhfffaoysa-n' );
Data source version: 2025-03-03
Data format: XSAMS 12.07
Query uuid in VAMDC query store: c39655d3-8169-4e0f-acc3-0fffbb01d764
Files
c39655d3-8169-4e0f-acc3-0fffbb01d764.zip
Files
(690.1 kB)
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md5:b18e315362f39175266050107d676948
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Additional details
Related works
- Is identical to
- https://cite.vamdc.eu/references.html?uuid=c39655d3-8169-4e0f-acc3-0fffbb01d764 (URL)
References
- Dubernet and Boursier and Denis-Alpizar and Ba et al (2024). BASECOL2023 scientific content. A&A:Astronomy and Astrophysics. https://doi.org/10.1051/0004-6361/202348233
- Denis-Alpizar, O. and Inostroza, N. and Castro Palacio, J.C. (2018). Rotational relaxation of CF$^+$ (X 1$\Sigma$) in collision with He ($^1$S). MNRAS:Monthly Notices of the Royal Astronomical Society. 10.1093/mnras/stx2422
- Denis-Alpizar, O. and Rubayo-Soneira, J. (2019). Rotational relaxation of CF$^+$ by collision with para-H$_2$. MNRAS:Monthly Notices of the Royal Astronomical Society. 10.1093/mnras/stz928
- Desrousseaux, B. and Lique, F. and Goicoechea, J. R. and Quintas-Sánchez, E. and Dawes, R. (2021). CF$^+$ Excitation in the Interstellar Medium. A&A:Astronomy and Astrophysics. 10.1051/0004-6361/202039823
- Desrousseaux, B. and Quintas-Sánchez, E. and Dawes, R. and Lique, F. (2019). Collisional Excitation of CF$^+$ by H$_2$ : Potential Energy Surface and Rotational Cross Sections. JPhChA:The Journal of Physical Chemistry A. 10.1021/acs.jpca.9b05538
- Quintas-Sánchez, E. and Dawes, R. (2019). AUTOSURF: A Freely Available Program To Construct Potential Energy Surfaces. JChInf&Mod:Journal of Chemical Information and Modeling. 10.1021/acs.jcim.8b00784
- Inostroza, N. and Letelier, J.R. and Senent, M.L. and Fuentealba,P. (2008). Theoretical ro-vibrational spectrum of CF$^+$. AcSpAB:Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. 10.1016/j.saa.2008.02.027
- Kawaguchi,K. and Hirota,E. (1985). Diode laser spectroscopy of CF$^+$. JCP:Journal de Chimie Physique. 10.1063/1.449427
- Cazzoli, G. and Cludi, L. and Puzzarini, C. and Gauss, J. (2010). Rotational Spectra of CF$^+$ and $^{13}CF$^+$ : Accurate Rest Frequencies and Spectroscopic Parameters. A&A:Astronomy and Astrophysics. 10.1051/0004-6361/200913057
- Stoecklin, T. and Voronin, A. and Rayez, J.~C. (2002). Vibrational quenching of N$_{2}$(${\nu}$=1, j$_{rot}$=j) by $^{3}$He: Surface and close-coupling calculations at very low energy. PhRvA:Physical Review A. 10.1103/PhysRevA.66.042703
- Hutson, J. M. and Green, S. (2012). MOLSCAT: MOLecular SCATtering v. 14. ascl:Astrophysics Source Code Library. tmp_doi_e5b47992-6b31-42be-a6a6-79cbcab000ab