Parameters of CH Absorption Lines Broadened by Atmospheric Air Pressure in the 2300 nm Region

Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, Ed. by V. Masson-Delmotte, P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (Cambridge University Press, 2021). https://doi.org/10.1017/9781009157896

Book  Google Scholar 

The Encyclopedia of the Solar System, Ed. by T. Spohn, D. Breuer, and T.V. Johnson (Elsevier, Amsterdam, 2014). https://doi.org/10.1016/C2010-0-67309-3

Book  MATH  Google Scholar 

A. Sanchez-Lopez, M. Lopez-Puertas, M. Garcia-Comas, B. Funke, T. Fouchet, and I. A. G. Snellen, “The CH4 abundance in Jupiter’s upper atmosphere,” Astron. Astrophys. 662, A91 (2022). https://doi.org/10.1051/0004-6361/202141933

Article  ADS  Google Scholar 

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. M. 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. Muller, O. V. Naumenko, A. Perrin, P. L. Polyansky, E. Raddaoui, P. L. Raston, Z. D. Reed, M. Rey, C. Richard, R. Tobias, I. Sadiek, D. W. Schwenke, E. Starikova, K. Sung, F. Tamassia, S. A. Tashkun, A. 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. Spectrosc. Radiat. Transfer 277, 107949 (2022). https://doi.org/10.1016/j.jqsrt.2021.107949

Article  Google Scholar 

T. Delahaye, R. Armante, N. A. Scott, N. Jacquinet-Husson, A. Chedin, L. Crepeau, 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. Muller, O. V. Naumenko, A. Nikitin, V. I. Perevalov, C. Richard, E. Starikova, S. A. Tashkun, Vl. G. Tyuterev, A. J. Vander, B. Vispoel, A. Yachmenev, and S. Yurchenko, “The 2020 edition of the GEISA spectroscopic database,” J. Mol. Spectrosc. 380, 111510 (2021). https://doi.org/10.1016/j.jms.2021.111510

Article  Google Scholar 

L. Daumont, A. V. Nilitin, X. Thomas, L. Regalia, P. Heyden, Vl. G. Tyuterev, M. Rey, V. Boudon, C. Wenger, M. Loete, and L. R. Brown, “New assignments in the 2 μm transparency window of the 12CH4 octad band system,” J. Quant. Spectrosc. Radiat. Transfer 116, 101–109 (2013). https://doi.org/10.1016/j.jqsrt.2012.08.025

Article  ADS  Google Scholar 

L. R. Brown, D. Chris Benner, J.-P. Champion, V. Malathy Devi, I. Fejard, R. R. Gamache, T. Gabard, C. Hilico, B. Lavorel, M. Loete, G. Ch. Mellau, A. Nikitin, A. S. Pine, A. Predoi-Cross, C. P. Rinsland, O. Robert, R. L. Sams, M. A. H. Smith, S. A. Tashkun, and Vl. G. Tyuterev, “Methane line parameters in HITRAN,” J. Quant. Spectrosc. Radiat. Transfer 82, 219–238 (2003). https://doi.org/10.1016/S0022-4073(03)00155-9

Article  ADS  Google Scholar 

A. Predoi-Cross, M. Brawley-Tremblay, L. R. Brown, V. Malathy Devi, and D. Chris Benner, “Multispectrum analysis of 12CH4 from 4100 to 4635 cm−1: II Air-broadening coefficients (widths and shift),” J. Mol. Spectrosc. 236, 201–215 (2006). https://doi.org/10.1016/j.jms.2006.01.013

Article  ADS  Google Scholar 

S. Albert, A. Bauerecker, V. Boudon, L. R. Brown, J. P. Champion, M. Loete, A. Nikitin, and M. Quack, “Global frequency and intensity analysis of 12CH4 in the 0–4800 cm−1 region,” Chem. Phys. 356, 131–146 (2009). https://doi.org/10.1016/j.chemphys.2008.10.019

Article  Google Scholar 

L. Pan, D. P. Edwards, J. C. Gille, M. W. Smith, and J. R. Drummond, “Satellite remote sensing of tropospheric CO and CH4: Forward model studies of the MOPITT instrument,” Appl. Opt. 34 (30), 6976–6988 (1995).

Article  ADS  Google Scholar 

T. Yu. Chesnokova, V. Boudon, T. Gabard, K. G. Gribanov, K. M. Firsov, and V. I. Zakharov, “Near-infrared radiative transfer modeling with different CH4 spectroscopic databases to retrieve atmospheric methane total amount,” J. Quant. Spectrosc. Radiat. Transfer 112, 2676–2682 (2011). https://doi.org/10.1016/j.jqsrt.2011.08.005

Article  ADS  Google Scholar 

V. M. Deichuli, T. M. Petrova, A. M. Solodov, A. A. Solodov, and V. I. Starikov, “Measurements of air-broadening parameters of water vapour transitions in the 5090–7490 cm−1 spectral region,” Mol. Phys. 121, 5–15 (2023). https://doi.org/10.1080/00268976.2023.2216133

Article  MATH  Google Scholar 

N. H. Ngo, D. Lisak, H. Tran, and J.-M. Hartmann, “An isolated line-shape model to go beyond the Voigt profile in spectroscopic databases and radiative transfer codes,” J. Quant. Spectrosc. Radiat. Transfer 129, 89–100 (2013). https://doi.org/10.1016/j.jqsrt.2013.05.034

Article  ADS  MATH  Google Scholar 

H. Tran, N. H. Ngo, and J.-M. Hartmann, “Efficient computation of some speed-dependent isolated line profiles,” J. Quant. Spectrosc. Radiat. Transfer 129, 199–203 (2013). https://doi.org/10.1016/j.jqsrt.2013.06.015

Article  ADS  MATH  Google Scholar 

J. Loos, M. Birk, and G. Wagner, “Measurement of positions, intensities and self-broadening lineshape parameters of H2O lines in the spectral ranges 1850–2280 cm–1 and 2390–4000 cm−1,” J. Quant. Spectrosc. Radiat. Transfer 203, 119–132 (2017). https://doi.org/10.1016/j.jqsrt.2017.02.013

Article  ADS  Google Scholar 

V. M. Deichuli, T. M. Petrova, A. M. Solodov, A. A. Solodov, and A. A. Fedorova, “Water vapor absorption line parameters in the 6760–7430 cm−1 region for application to CO2-rich planetary atmosphere,” J. Quant. Spectrosc. Radiat. Transfer 293, 108386 (2022). https://doi.org/10.1016/j.jqsrt.2023.108850

Article  MATH  Google Scholar 

K. Gribanov, J. Jouzel, V. Bastrikov, J.-L. Bonne, F.-M. Breon, M. Butzin, O. Cattani, V. Masson-Delmotte, N. Rokotyan, M. Werner, and V. Zakharov, “Developing a Western Siberia reference site for tropospheric water vapour isotopologue observations obtained by different techniques (in situ and remote sensing),” Atmos. Chem. Phys. 14, 5943–5957 (2014). https://doi.org/10.5194/acp-14-5943-2014

Article  ADS  Google Scholar 

The NCEP/NCAR Reanalysis Project. http://www.esrl.noaa.gov/psd/data/reanalysis/. Cited February 5, 2024.

E. Kalnay, M. Kanamitsu, R. Kistler, W. Collins, D. Deaven, L. Gandin, M. Iredel, S. Saha, G. White, J. Woollen, Y. Zhu, A. Leetma, B. Reynolds, M. Chelliah, W. Ebisuzaki, W. Higgins, J. Janowiak, K. C. Mo, C. Ropelewsk, J. Wang, R. Jenne, and D. Joseph, “The NCEP/NCAR 40-year reanalysis project,” Bull. Am. Meteorol. Soc. 77, 437–472 (1996). https://doi.org/10.1175/1520-0477

Article  ADS  Google Scholar 

F. Hase, J. W. Hannigan, M. T. Coffey, A. Goldman, M. Hopfner, N. B. Jones, C. P. Rinsland, and S. W. Wood, “Intercomparison of retrieval codes used for the analysis of high-resolution, ground-based FTIR measurements,” J. Quant. Spectrosc. Radiat. Transfer 87, 25–52 (2004). https://doi.org/10.1016/j.jqsrt.2003.12.008

Article  ADS  Google Scholar 

Comments (0)

No login
gif