R. Atkinson, D. L. Baulch, R. A. Cox, J. N. Crowley, R. F. Hampson et al., Summary of Evaluated Kinetic and Photochemical Data for Atmospheric Chemistry IUPAC Subcommittee on Gas Kinetic Data Evaluation for Atmospheric Chemistry, 2005.

D. Baker, A. Steed, R. Huppi, and K. Baker, Twilight Transition Spectra Of Atmospheric O 2 IR Emissions, Geophys. Res. Lett, vol.2, pp.235-238, 1975.

J. L. Bertaux, E. Kyrölä, D. Fussen, A. Hauchecorne, F. Dalaudier et al., Global ozone monitoring by occultation of stars: an overview of GOMOS measurements on ENVISAT, Atmos. Chem. Phys, vol.10, pp.12091-12148, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00474411

J. L. Bertaux, B. Gondet, F. Lefèvre, J. P. Bibring, and F. Montmessin, First detection of O 2 1.27 µm nightglow emission at Mars with OMEGA/MEX and comparison with GCM model predictions, J. Geophys. Res, vol.117, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00566300

D. Bockelée-morvan, V. Debout, S. Erard, C. Leyrat, F. Capaccioni et al., First observations of H 2 O and CO 2 vapor in comet 67P/Churyumov-Gerasimenko made by VIRTIS onboard Rosetta, A and A, vol.583, pp.270-304, 2011.

H. Bovensmann, J. P. Burrows, M. Buchwitz, J. Frerick, S. Noël et al., SCIA-MACHY: Mission Objectives and Measurement Modes, J. Atmos. Sci, vol.56, pp.127-150, 1999.

G. P. Brasseur and S. Solomon, Aeronomy of the Middle Atmosphere, 2005.

J. Burkholder, S. Sander, J. Abbatt, J. Barker, R. Huie et al., Chemical Kinetics and Photochemical Data for Use in Atmospheric Studies, Evaluation Number 18, NASA panel for data evaluation technical report, JPL Publication 15-10, 2015.

J. P. Burrows, E. Hölzle, A. P. Goede, H. Visser, and W. Fricke, SCIAMACHY-scanning imaging absorption spectrometer for atmospheric chartography, Acta Astronaut, vol.35, pp.445-451, 1995.

A. Butz, O. P. Hasekamp, C. Frankenberg, A. , and I. , CEOS: A constellation architecture for monitoring carbon dioxide and methane from space, Report prepared by the CEOS Atmospheric Composition Virtual Constellation Greenhouse Gas Team, Appl. Opt, vol.48, pp.3322-3336, 2009.

J. Bertaux, The use of the 1.27 µm O 2 absorption band for greenhouse gas monitoring Virtual_Constellations/ACC/Documents/CEOS_AC-VC_ GHG_White_Paper_Version_1_20181009.pdf (last access: 20, 2013.
URL : https://hal.archives-ouvertes.fr/insu-02151491

S. A. Clough and M. J. Iacono, J. Geophys. Res, vol.100, p.16519, 1995.

P. Connes, J. F. Noxon, W. A. Traub, N. P. Carleton, D. Crisp et al., Ground-based near-infrared observations of the Venus nightside: 1.27 µm O 2 (a 1 g ) airglow from the upper atmosphere, J. Geophys. Res, vol.233, pp.4577-4593, 1979.

D. Crisp, R. Atlas, F. Breon, L. Brown, J. Burrows et al., The Orbiting Carbon Observatory (OCO) mission, Adv. Space Res, vol.34, pp.700-709, 2004.

D. Crisp, H. R. Pollock, R. Rosenberg, L. Chapsky, R. A. Lee et al., The onorbit performance of the Orbiting Carbon Observatory-2 (OCO-2) instrument and its radiometrically calibrated products, Atmos. Meas. Tech, vol.10, pp.59-81, 2017.

D. Crisp, H. Bösch, L. Brown, R. Castano, M. Christi et al.,

, Level 2 Full Physics Retrieval Algorithm Theoretical Basis, 2017.

E. De-wachter, N. Kumps, A. C. Vandaele, B. Langerock, and M. De-mazière, Retrieval and validation of MetOp/IASI methane, Atmos. Meas. Tech, vol.10, pp.4623-4638, 2017.

F. Ebojie, C. Von-savigny, A. Ladstätter-weißenmayer, A. Rozanov, M. Weber et al., Tropospheric column amount of ozone retrieved from SCIAMACHY limb-nadirmatching observations, Atmos. Meas. Tech, vol.7, pp.2073-2096, 2014.

W. F. Evans, D. M. Hunten, E. J. Llewellyn, V. Jones, and A. , Altitude Profile of the Infrared Atmospheric System of Oxygen in the Dayglow, J. Geophys. Res, vol.73, 1968.

H. Gao, J. Xu, G. Chen, W. Yuan, and A. B. Beletsky, Global distributions of OH and O 2 (1.27 µm) nightglow emissions observed by TIMED satellite, Sci. China Technol. Sc, vol.54, pp.619-622, 1964.

I. E. Gordon, S. Kassi, A. Campargue, G. C. Toon, I. Gordon et al., First identification of the a 1 g ?X 3 ? g electric quadrupole transitions of oxygen in solar and laboratory spectra, J. Quant. Spectrosc. Ra, vol.13, pp.3-69, 1965.

O. Hasekamp, H. Hu, R. Detmers, and A. Butz, Algorithm Theoretical Basis Document for the RemoTeC XCO2 and XCH4 Full Physics Products, ESA GHG CCI, 2015.

J. Heymann, M. Reuter, M. Hilker, M. Buchwitz, O. Schneising et al., Consistent satellite XCO 2 retrievals from SCIAMACHY and GOSAT using the BESD algorithm, Atmos. Meas. Tech, vol.8, pp.2961-2980, 2008.

Z. Kuang, J. Margolis, G. Toon, D. Crisp, Y. et al., Spaceborne measurements of atmospheric CO 2 by high-resolution NIR spectrometry of reflected sunlight: An introductory study, Geophys. Res. Lett, vol.29, pp.11-12, 2002.

E. Kyrölä, M. E. Andersson, P. T. Verronen, M. Laine, S. Tukiainen et al., Middle atmospheric ozone, nitrogen dioxide and nitrogen trioxide in 2002-2011: SD-WACCM simulations compared to GOMOS observations, Atmos, Chem. Phys, vol.18, pp.5001-5019, 2018.

W. J. Lafferty, A. M. Solodov, C. L. Lugez, and G. T. Fraser, Rotational line strengths and self-pressure-broadening coefficients for the 1, Appl. Opt, vol.27, issue.2, pp.2264-2270, 1998.

F. Lefèvre, G. P. Brasseur, I. Folkins, A. K. Smith, and P. Simon, Chemistry of the 1991-1992 stratospheric winter: Threedimensional model simulations, J. Geophys. Res.-Atmos, vol.99, pp.8183-8195, 1994.

L. Quéré, C. Andrew, R. M. Friedlingstein, P. Sitch, S. Pongratz et al., Global Carbon Budget, vol.10, pp.405-448, 2017.

E. J. Llewellyn, N. D. Lloyd, D. A. Degenstein, R. L. Gattinger, S. V. Petelina et al., The OSIRIS instrument on the Odin spacecraft, Can. J. Phys, vol.82, pp.411-422, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00136458

M. Lopez-puertas, M. E. Koukouli, B. Funke, S. Gil-lópez, N. Glatthor et al., Evidence for CH 4 7.6 µm non-local thermodynamic equilibrium emission in the mesosphere, Geophys. Res. Lett, vol.32, p.4805, 2005.

R. P. Lowe, Interferometric Spectra of the Earth's Airglow (1.2 to 1.6 µm), A Discussion on Infrared Astronomy, Philos. T. R. Soc. S.-A, vol.264, pp.163-169, 1969.

E. Marcq, E. Lellouch, T. Encrenaz, T. Widemann, M. Birlan et al., Search for horizontal and vertical variations of CO in the day and night side lower mesosphere of Venus from CSHELL/IRTF 4.53 µm observations, Planet. Space Sci, vol.113, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01102548

M. G. Mlynczak and S. Solomon, A detailed evaluation of the heating efficiency in the middle atmosphere, J. Geophys. Res, vol.98, pp.10517-10541, 1993.

M. G. Mlynczak, B. T. Marshall, F. J. Martin-torres, I. Russell, J. M. Thompson et al., Sounding of the Atmosphere using Broadband Emission Radiometry observations of daytime mesospheric O 2 ( 1 ) 1.27 µm emission and derivation of ozone, atomic oxygen, and solar and chemical energy deposition rates, J. Geophys. Res, vol.112, p.15306, 2007.

D. Morstad, D. Doelling, D. Scarino, R. Bhatt, and A. Gopalan, Characterization of Deep Convective Clouds as absolute Calibration Targets for Visible Sensors, CALCON Technical Conference, 2012.

J. F. Noxon, A global study of O 2 1-delta Airglow -Day and twilight, Planet. Space Sci, vol.30, pp.545-557, 1982.

J. F. Noxon, A. Jones, J. F. Noxon, W. A. Traub, N. P. Carleton et al., Observation of the (0, 0) band of the ( 1 g ? 3 g ) system of oxygen in the day and twilight airglow, Astrophy. J, vol.213, pp.1025-1035, 1962.

D. M. O'brien and P. J. Rayner, Global observations of the carbon budget, 2, CO 2 column from differential absorption of reflected sunlight in the 1.61 µm band of CO 2, J. Geophys. Res, vol.107, 2002.

C. W. O'dell, A. Eldering, P. O. Wennberg, D. Crisp, M. R. Gunson et al., Improved retrievals of carbon dioxide from Orbiting Carbon Observatory-2 with the version 8 ACOS algorithm, Atmos. Meas. Tech, vol.11, pp.6539-6576, 2018.

F. Pasternak, P. Bernard, L. Georges, P. , and V. , The Micro-Carb instrument, ICSO, Proc. SPIE, vol.10562, pp.105621-105634, 2016.

W. R. Pendleton, D. J. Baker, R. J. Reese, and R. R. Neil, Decay of O 2 (a 1 g ) in the evening twilight airglow: Implications for the radiative lifetime, Geophys. Res. Lett, vol.23, pp.1013-1016, 1996.

C. D. Rodgers, Inverse Methods for Atmospheric Sounding: Theory and Practice, 2000.

I. Russell, J. M. Mlynczak, M. G. Gordley, L. L. Tansock, J. Esplin et al., An overview of the SABER experiment and preliminary calibration results, SPIE Proceedings, vol.3756, 1999.

N. A. Scott and A. Chedin, A fast line-by-line method for atmospheric absorptions computations: the automatized atmospheric absorption atlas, J. Appl. Meteorol, vol.20, pp.802-812, 1981.

M. Simeckova, D. Jacquemart, L. S. Rothman, R. R. Gamache, and A. Goldman, Einstein A-coefficients and statistical weights for molecular absorption transitions in the HITRAN data base, J. Quant. Spectrosc. Ra, vol.98, pp.130-155, 2006.

C. E. Sioris and R. Spurr, Impact of the dayglow and the Ring effect on the retrieval of surface pressure from the A and B bands of O 2 : application to Orbiting Carbon Observatory, Internal Report, Harvard-Smithsonian Center for Astrophysics, 2003.

J. Bertaux, Reevaluating the use of O 2 a 1 g band in spaceborne remote sensing of greenhouse gases, The use of the 1.27 µm O 2 absorption band for greenhouse gas monitoring Sun, vol.45, pp.5779-5787, 2018.

R. J. Thomas, C. A. Barth, D. W. Rusch, and R. W. Sanders, Solar Mesosphere Explorer Near-Infrared Spectrometer: Measurements of 1.27 µm radiances and the inference of mesospheric ozone, J. Geophys. Res.-Atmos, vol.89, pp.9569-9580, 1984.

J. T. Wiensz, Ozone Retrievals from the Oxygen Infrared Channels of the OSIRIS Infrared Imager, 2005.

H. Yamamoto, T. Makino, H. Sekiguchi, and I. Naito, Infrared atmospheric band airglow radiometer on board the satellite OHZORA, J. Geomagn. Geoelectr, vol.40, pp.321-333, 1988.

T. Yokota, Y. Yoshida, N. Eguchi, Y. Ota, T. Tanaka et al., Global Concentrations of CO 2 and CH 4 Retrieved from GOSAT: First Preliminary Results, vol.5, pp.160-163, 2009.

Y. Yoshida, Y. Ota, N. Eguchi, N. Kikuchi, K. Nobuta et al., Retrieval algorithm for CO 2 and CH 4 column abundances from short-wavelength infrared spectral observations by the Greenhouse gases observing satellite, Atmos. Meas. Tech, vol.4, pp.717-734, 2011.

A. Zarboo, S. Bender, J. P. Burrows, J. Orphal, and M. Sinnhuber, Retrieval of O 2 ( 1 ) and O 2 ( 1 ) volume emission rates in the mesosphere and lower thermosphere using SCIA-MACHY MLT limb scans, Atmos. Meas. Tech, vol.11, pp.473-487, 2018.