Spectroscopic Parameters of the (3–0) Vibrational Band for the 15N16O Molecule in the Ground Electronic State

B. D. Belan, Tropospheric Ozon (Publishing House of IAO SB RAS, Tomsk, 2010) [in Russian].

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. Wcislo, 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. Cane, A. G. Csaszar, 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, Z. D. Reed, M. Rey, C. Richard, R. Tobias, I. Sadiek, D. W. Schwenke, E. Starikova, K. Sung, F. Tamassia, S. A. Tashkun, Auwera J. Vander, I. A. Vasilenko, A. A. Vigasin, G. L. Villanueva, B. Vispoel, G. Wagner, A. Yachmenev, and S. N. Yurchenko, “The HITRAN2020 molecular spectroscopic database,” J. Quant. Spetrosc. Radiat. Transfer 277, 107949 (2022).

Article  Google Scholar 

O. N. Sulakshina and Yu. G. Borkov, “Critical evaluation of measured line positions of 14N16O in X 2Π state,” J. Quant. Spetrosc. Radiat. Transfer 209, 171–179 (2018).

Article  ADS  Google Scholar 

M. D. Olman, D. M. McNelis, and C. D. Hause, “Molecular constants of nitric oxide from near infrared spectrum,” J. Mol. Spectrosc. 14, 62–78 (1964).

Article  ADS  Google Scholar 

D. B. Keck and C. D. Hause, “High resolution study of nitric oxide near 5.4 microns,” J. Mol. Spectrosc. 26, 163–174 (1968).

Article  ADS  Google Scholar 

C. Amiot and G. Guelachvili, “Infrared study of the 15N isotopic species of nitric oxide near 5.4 μm,” J. Mol. Spectrosc. 76, 86–103 (1979).

Article  ADS  Google Scholar 

J. L. Teffo, A. Henry, Ph. Cardinet, and A. Valentin, “Determination of molecular constants of nitric oxide from (1–0), (2–0), (3–0) bands of the 15N16O and 15N18O isotopic species,” J. Mol. Spectrosc. 82, 348–363 (1980).

Article  ADS  Google Scholar 

W. L. Meerts and A. Dymanus, “The hyperfine Λ-doubling spectrum of 14N16O and 15N16O,” J. Mol. Spectrosc. 44, 320–3463 (1972).

Article  ADS  Google Scholar 

R. M. Dale, J. W. C. Johns, A. R. W. McKeller, and M. Riggin, “High-resolution laser magnetic resonance and infrared-radiofrequency double-resonance spectroscopy of no and its isotopes near 5.4 μm,” J. Mol. Spectrosc. 67, 440–458 (1977).

Article  ADS  Google Scholar 

A. H. Saleck, K. M. T. Yamada, and G. Winnewisser, “Isotopic nitric oxide spectra and breakdown of the born-oppenheimer approximation,” Mol. Phys. 72, 1135–1148 (1991).

Article  ADS  Google Scholar 

T. D. Varberg, F. Stroh, and K. M. Evenson, “Far-infrared rotational and fine-structure transition frequencies and nolecular constants of NO and NO in the XΠ (v = 0) state,” J. Mol. Spectrosc. 196, 5–13 (1999).

Article  ADS  Google Scholar 

A. Wong, S. N. Yurchenko, P. Bernath, S. Holder, P. Muller, S. McConkey, and J. Tennyson, “ExoMol line list-XXI. Nitric oxide (NO),” M. N. R. Astron. Soc. 470, 882–897 (2017).

Article  ADS  Google Scholar 

O. M. Lyulin, “Determination of spectral line parameters from several absorption spectra with the multispectrum fitting computer code,” Atmos. Ocean. Opt. 28 (6), 487–495 (2015).

Article  Google Scholar 

J. M. Brown, E. A. Colbourn, J. K. G. Watson, and F. D. Wayne, “En effective Hamiltonian for diatomic molecules. Ab initio calculations of parameters of HCl+,” J. Mol. Spectrosc. 74, 294–318 (1979).

Article  ADS  Google Scholar 

O. N. Sulakshina and Yu. G. Borkov, “Global modelling of the experimental energy levels and observed line positions: Dunham coefficients for the ground state of 14N16O,” Mol. Phys. 116, 3519–3529 (2018).

Article  ADS  Google Scholar 

留言 (0)

沒有登入
gif