Part 2:Validation for line lists generated for nitric acid (H14N16O3) for the ν1 band and its first two associated hot bands (ν1+ν9-ν9, ν1+ν7-ν7) in the 2.8 μm region, the ν1-ν9, ν1+ν9 and ν1+ν7 bands at 3.2 μm, 2.5 μm and 2.4 μm, respectively

Author:

Perrin A.,Manceron L.,Armante R.,Kwabia-Tchana F.,Roy P.,Toon G.C.

Funder

Agence Nationale de la Recherche

National Aeronautics and Space Administration

Publisher

Elsevier BV

Subject

Physical and Theoretical Chemistry,Spectroscopy,Atomic and Molecular Physics, and Optics

Reference10 articles.

1. A. Perrin, L. Manceron, R. Armante, F. Kwabia-Tchana, P. Roy, G.C. Toon, First investigation of the ν1, ν1-ν9, ν1+ν9 and ν1+ν7 absorption bands for nitric acid (H14N16O3) at 3551.766 cm-1, 3092.708 cm-1, 4006.974 cm-1, and 4127.782 cm-1, respectively; (previous article in this issue).

2. I.E. Gordon, L.S. Rothman, R.J. Hargreaves, R. Hashemi, E.V. Karlovets, F.M. Skinner, E.K. Conway, C. Hill, R.V. Kochanov, Y. Tan, P. Wcisło, A.A. Finenko, K. Nelson, P.F. Bernath, M. Birk, V. Boudon, A. Campargue, K.V. Chance, A. Coustenis, B.J. Drouin, J.–M. Flaud, R.R. Gamache, J.T. Hodges, D. Jacquemart, E.J. Mlawer, A.V. Nikitin, V.I. Perevalov, M. Rotger, J. Tennyson, G.C. Toon, H. Tran, V.G. Tyuterev, E.M. Adkins, A. Baker, A. Barbe, E. Canè, A.G. Császár, A. Dudaryonok, O. Egorov, A.J. Fleisher, H. Fleurbaey, A. Foltynowicz, T. Furtenbacher, J.J. Harrison, J.–M. Hartmann, V.–M. Horneman, X. Huang, T. Karman, J. Karns, S. Kassi, I. Kleiner, V. Kofman, F. Kwabia–Tchana, N.N. Lavrentieva, T.J. Lee, D.A. Long, A.A. Lukashevskaya, O.M. Lyulin, V.Yu. Makhnev, W. Matt, S.T. Massie, M. Melosso, S.N. Mikhailenko, D. Mondelain, H.S.P. Müller, O.V. Naumenko, A. Perrin, O.L. Polyansky, E. Raddaoui, P.L. Raston, Z.D. Reed, M. Rey, C. Richard, R. Tóbiás, I. Sadiek, D.W. Schwenke, E. Starikova, K. Sung, F. Tamassia, S.A. Tashkun, J. Vander Auwera, I.A. Vasilenko, A.A. Vigasin, G.L. Villanueva, B. Vispoel, G. Wagner, A. Yachmenev, S.N. Yurchenko. The HITRAN2020 molecular spectroscopic database, J. Quant. Spectrosc. Radiat. Transf. 277 (2022) 107949, ISSN 0022-4073, https://doi.org/10.1016/j.jqsrt.2021.107949.

3. T. Delahaye, R.Armante, N.A.Scott, N.Jacquinet-Husson, A.Chédin, L.Crépeau, C.Crevoisier, V.Douet, A.Perrin, A.Barbe, V.Boudon, A.Campargue, L.H.Coudert, V.Ebert, J.-M.Flaud, R.R.Gamache, D.Jacquemart, A.Jolly, F.Kwabia Tchana, A.Kyuberis, G.Li, O.M.Lyulin, L.Manceron, S.Mikhailenko, N.Moazzen-Ahmadi, H.S.P.Müller, O.V.Naumenko, A.Nikitin, V.IPerevalov, C.Richard, E.Starikova, S.A.Tashkun, Vl.G.Tyuterev, J.Vander Auwera, B.Vispoel, A.Yachmenev, S.Yurchenko The 2020 edition of the GEISA spectroscopic database. J. Mol. Spectrosc. 380 (2021) 111510, https://doi.org/10.1016/j.jms.2021.111510.

4. Toon, G.C., J.-F. Blavier, K. Sung, L.S. Rothman, I. Gordon, HITRAN spectroscopy evaluation using solar occultation FTIR spectra, J. Quant. Spectrosc. Radiat. Transf. 182 (2016) 324-336, https://dx.doi.org/10.1016.j,jqsrt.2016.05.21.

5. A hybrid variational- perturbation calculation of the ro-vibrational spectrum of nitric acid;Pavlyuchko;J. Chem. Phys.,2015

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