A
Alain Grosjean
Researcher at Centre national de la recherche scientifique
Publications - 24
Citations - 719
Alain Grosjean is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Eigenvalues and eigenvectors & Adiabatic process. The author has an hindex of 9, co-authored 24 publications receiving 680 citations. Previous affiliations of Alain Grosjean include University of Hull.
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BASECOL2012: A collisional database repository and web service within the Virtual Atomic and Molecular Data Centre (VAMDC)
Marie-Lise Dubernet,Millard H. Alexander,Yaye-Awa Ba,Naduvalath Balakrishnan,Christian Balança,Cecilia Ceccarelli,José Cernicharo,Fabien Daniel,Fabrice Dayou,M. Doronin,Fabien Dumouchel,Alain Faure,N. Feautrier,D. R. Flower,Alain Grosjean,Philippe Halvick,Jacek Kłos,François Lique,George C. McBane,Sarantos Marinakis,Nicolas Moreau,Robert Moszynski,David A. Neufeld,Evelyne Roueff,Peter Schilke,A. Spielfiedel,Phillip C. Stancil,Thierry Stoecklin,Jonathan Tennyson,Benhui Yang,A-M. Vasserot,Laurent Wiesenfeld +31 more
TL;DR: The BASECOL2012 database as mentioned in this paper is a repository of collisional data and a web service within the Virtual Atomic and Molecular Data Centre (VAMDC, http://www.vamdc.eu).
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Rotational excitation of 45 levels of ortho/para-H2O by excited ortho/para-H2 from 5 K to 1500 K: state-to-state, effective, and thermalized rate coefficients
TL;DR: In this article, the rotational excitation of ortho/para-H2O with para/ortho-h2 was investigated and the thermalized de-(excitation) rate coefficients up to 1500 K for the first 45th level of H2O were provided.
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Rotational excitation of ortho-H$_{2}$O by para-H$_{2}$ (j$_{2}$ = 0, 2, 4, 6, 8) at high temperature
TL;DR: In this paper, the authors presented state-to-state rate coefficients among the 45 lowest levels of o-H2O with H2(j2 = 0) and Δj2= 0, +2, as well as with H 2(j 2 = 2) and δj2 ≥ 0, − 2a ndj2 = 2 with Δj 2 ≥ 2.
Journal ArticleDOI
The Morse potential with angular momentum
TL;DR: In this paper, it is shown that the hypervirial perturbation method, which gives exact results for the Morse potential, also gives results for perturbed problem which are much more accurate than those of previous authors.
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Rotational excitation of 20 levels of para-H2O by ortho-H2 (j2 =1 , 3, 5, 7) at high temperature
TL;DR: In this article, a set of rotational (de)-excitation state-to-state and effective rate coefficients for temperatures up to 1500 K were obtained using the close coupling (CC) method over the whole energy range.