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Andrei Nikitin

Researcher at Russian Academy of Sciences

Publications -  106
Citations -  12274

Andrei Nikitin is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Ab initio & Potential energy surface. The author has an hindex of 37, co-authored 95 publications receiving 11378 citations. Previous affiliations of Andrei Nikitin include University of Burgundy & University of Reims Champagne-Ardenne.

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The HITRAN 2008 molecular spectroscopic database

TL;DR: The new HITRAN is greatly extended in terms of accuracy, spectral coverage, additional absorption phenomena, added line-shape formalisms, and validity, and molecules, isotopologues, and perturbing gases have been added that address the issues of atmospheres beyond the Earth.
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The 2015 edition of the GEISA spectroscopic database

Nicole Jacquinet-Husson, +58 more
TL;DR: The GEISA database (Gestion et Etude des Informations Spectroscopiques Atmospheriques: Management and Study of Atmospheric Spectroscopic Information) has been developed and maintained by the ARA/ABC(t) group at LMD since 1974.
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The 2009 edition of the GEISA spectroscopic database

N. Jacquinet-Husson, +58 more
TL;DR: The GEISA database as mentioned in this paper is a computer-accessible system comprising three independent sub-databases devoted, respectively, to: line parameters, infrared and ultraviolet/visible absorption cross-sections, microphysical and optical properties of atmospheric aerosols.
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The 1997 spectroscopic GEISA databank

TL;DR: The current version of the GEISA-97 database is described in this paper, which contains 1,346,266 entries and includes a catalog of absorption cross-sections of molecules such as chlorofluorocarbons which exhibit unresolvable spectra.
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The GEISA spectroscopic database: Current and future archive for Earth and planetary atmosphere studies

TL;DR: The GEISA database as discussed by the authors is a computer accessible spectroscopic database, designed to facilitate accurate forward radiative transfer calculations using a line-byline and layer-by-layer approach.