P. Tans, R. Keeling, L. Rothman, I. Gordon, A. Barbe et al., Available from The HITRAN 2008 molecular spectroscopic database, Carbon Dioxide: Recent Monthly CO 2 at Mauna Loa Variations in concentration and isotopic abundances of atmospheric carbon dioxide, Proceedings of the conference on recent research in climatology, Committee on Research in Water Resources and University of California, Scripps Institution of Oceanography, pp.533-72, 1957.

C. Keeling, C. Lorius, J. Jouzel, C. Ritz, L. Merlivat et al., 000-year climate record from Antartic ice Climate and atmospheric history of the past 420,000 years from the Vostok ice core, Antarctica [7] IPCC. Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, The Concentration and Isotopic Abundances of Carbon Dioxide in the Atmosphere NM, Notholt J, Total Column Carbon Observing Network (TCCON), Fourier Transform Spectroscopy, pp.200-203, 1960.

G. Toon, J. Blavier, B. Sen, J. Margitan, C. Webster et al., Comparison of MkIV balloon and ER-2 aircraft measurements of atmospheric trace gases, Journal of Geophysical Research: Atmospheres, vol.33, issue.D21, pp.26779-2690, 1999.
DOI : 10.1029/1999JD900379

C. Parkinson and . Aqua, Aqua: an earth-observing satellite mission to examine water and other climate variables, IEEE Transactions on Geoscience and Remote Sensing, vol.41, issue.2, pp.173-83, 2003.
DOI : 10.1109/TGRS.2002.808319

H. Aumann, D. Gregorich, and S. Gaiser, AIRS hyper-spectral measurements for climate research: Carbon dioxide and nitrous oxide effects, Geophysical Research Letters, vol.103, issue.5, p.5806, 2005.
DOI : 10.1029/2004GL021784

H. Kramer, Observation of the Earth and its Environment -Survey of Missions and Sensors, 2002.

G. Chalon, C. F. Diebel, and D. , IASI : An Advance Sounder for Operational Meteorology, Proceedings of the 52nd Congress of IAF, pp.1-5, 2001.

G. Inoue, T. Yokota, H. Oguma, A. Higurashi, I. Morino et al., Overview of Greenhouse Gases Observing Satellite (GOSAT) of Japan, AGU 2004 Fall Meeting, pp.13-17, 2004.

D. Crisp, R. Atlas, F. Breon, L. Brown, J. Burrows et al., The Orbiting Carbon Observatory (OCO) mission, Advances in Space Research, vol.34, issue.4, pp.700-709, 2004.
DOI : 10.1016/j.asr.2003.08.062

D. Crisp and C. Miller, The Need for Atmospheric Carbon Dioxide Measurements from Space: Contributions from a Rapid Reflight of the Orbiting Carbon Observatory, 2009.

C. Miller, L. Brown, R. Toth, D. Benner, and V. Devi, Spectroscopic challenges for high accuracy retrievals of atmospheric CO2 and the Orbiting Carbon Observatory (OCO) experiment, Comptes Rendus Physique, vol.6, issue.8, pp.876-87, 2005.
DOI : 10.1016/j.crhy.2005.09.005

H. Pumphrey and S. Buehler, Instrumental and Spectral Parameters :their effect on and measurement by microwave limb sounding of the atmosphere, J. Quant. Spectrosc. Radiat. Transfer, vol.64, pp.421-458, 2000.

J. Bosenberg, Measurements of the pressure shift of water vapor absorption lines by simultaneous photoacoustic spectroscopy, Applied Optics, vol.24, issue.21, pp.3531-3535, 1985.
DOI : 10.1364/AO.24.003531

V. Devi, C. Benner, D. Smith, M. Brown, L. Dulick et al., Absolute intensity measurements of the laser bands near, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.76, issue.3-4, pp.393-410, 2003.
DOI : 10.1016/S0022-4073(02)00067-5

V. Devi, D. Benner, M. Smith, L. Brown, and M. Dulick, Multispectrum analysis of pressure broadening and pressure shift coefficients in the and laser bands, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.76, issue.3-4, pp.411-445, 2003.
DOI : 10.1016/S0022-4073(02)00068-7

W. Chu, E. Chiou, J. Larsen, L. Thomason, D. Rind et al., Algorithms and sensitivity analyses for Stratospheric Aerosol and Gas Experiment II water vapor retrieval, Journal of Geophysical Research: Atmospheres, vol.34, issue.D3, pp.4857-66, 1993.
DOI : 10.1029/92JD01628

V. Payne, J. Delamere, K. Cady-pereira, R. Gamache, J. Moncet et al., Air-Broadened Half-Widths of the 22- and 183-GHz Water-Vapor Lines, IEEE Transactions on Geoscience and Remote Sensing, vol.46, issue.11, pp.3601-3618, 2007.
DOI : 10.1109/TGRS.2008.2002435

J. Delamere, S. Clough, V. Payne, E. Mlawer, D. Turner et al., A far-infrared radiative closure study in the Arctic: Application to water vapor, Journal of Geophysical Research, vol.83, issue.D13, pp.17106-17116, 2010.
DOI : 10.1029/2009JD012968

J. Liljegren, S. Boukabara, K. Cady-pereira, and S. Clough, The effect of the half-width of the 22-GHz water vapor line on retrievals of temperature and water vapor profiles with a 12-channel microwave radiometer, IEEE Transactions on Geoscience and Remote Sensing, vol.43, issue.5, pp.1102-1110, 2005.
DOI : 10.1109/TGRS.2004.839593

V. Devi, D. Benner, C. Miller, and A. Predoi-cross, Lorentz half-width, pressure-induced shift and speed-dependent coefficients in oxygen-broadened CO2 bands at 6227 and 6348cm???1 using a constrained multispectrum analysis, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.111, issue.16, pp.2355-69, 2010.
DOI : 10.1016/j.jqsrt.2010.06.003

T. Tanaka, M. Fukabori, T. Sugita, H. Nakajima, T. Yokota et al., Spectral line parameters for CO2 bands in the 4.8- to 5.3-??m region, Journal of Molecular Spectroscopy, vol.239, issue.1, pp.1-10, 2006.
DOI : 10.1016/j.jms.2006.05.013

F. Valero and C. Suárez, Measurement at different temperatures of absolute intensities, line half-widths, and broadening by Ar and N2 for the 3001II???0000 band of CO2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.19, issue.6, pp.579-90, 1978.
DOI : 10.1016/0022-4073(78)90092-4

C. Suárez and F. Valero, Intensities, self-broadening, and broadening by Ar and N2 for the 301III ??? 000 band of CO2 measured at different temperatures, Journal of Molecular Spectroscopy, vol.71, issue.1-3, pp.46-63, 1978.
DOI : 10.1016/0022-2852(78)90074-7

I. Pouchet, V. Zéninari, B. Parvitte, and G. Durry, Diode laser spectroscopy of CO2 in the region for the in situ sensing of the middle atmosphere, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.83, issue.3-4, pp.619-647, 2004.
DOI : 10.1016/S0022-4073(03)00108-0

D. Rosa, M. Corsi, C. Gabrysch, M. , D. Amato et al., COLLISIONAL BROADENING AND SHIFT OF LINES IN THE 2??1+2??2+??3 BAND OF CO2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.61, issue.1, pp.97-104, 1999.
DOI : 10.1016/S0022-4073(97)00207-0

S. Nakamichi, Y. Kawaguchi, H. Fukuda, S. Enami, S. Hashimoto et al., measured with continuous-wave cavity ring-down spectroscopy, Phys. Chem. Chem. Phys., vol.68, issue.3, pp.364-372, 2006.
DOI : 10.1039/B511772K

T. Hikida and K. Yamada, N2- and O2-broadening of CO2 for the (3001)III???(0000) band at 6231cm???1, Journal of Molecular Spectroscopy, vol.239, issue.2, pp.154-163, 2006.
DOI : 10.1016/j.jms.2006.07.001

L. Rosenmann, J. Hartmann, M. Perrin, and J. Taine, IR lines. II. Calculations, The Journal of Chemical Physics, vol.88, issue.5, pp.2999-3006, 1988.
DOI : 10.1063/1.453941

V. Devi, D. Benner, M. Smith, and C. Rinsland, Air- and N2-broadening coefficients and pressure-shift coefficients in the 12C16O2 laser bands, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.59, issue.3-5, pp.137-186, 1998.
DOI : 10.1016/S0022-4073(97)00113-1

V. Devi, D. Benner, C. Rinsland, and M. Smith, Measurements of pressure broadening and pressure shifting by nitrogen in the 4.3-??m band of 12C16O2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.48, issue.5-6, pp.581-590, 1992.
DOI : 10.1016/0022-4073(92)90122-K

J. Johns, Absolute intensity and pressure broadening measurements of CO2 in the 4.3-??m region, Journal of Molecular Spectroscopy, vol.125, issue.2, pp.442-64, 1987.
DOI : 10.1016/0022-2852(87)90109-3

J. Li, K. Liu, W. Zhang, W. Chen, and X. Gao, Self-, N2- and O2-broadening coefficients for the 12C16O2 transitions near-IR measured by a diode laser photoacoustic spectrometer, Journal of Molecular Spectroscopy, vol.252, issue.1, pp.9-16, 2008.
DOI : 10.1016/j.jms.2008.03.018

C. Corsi, D. Amato, F. , D. Rosa, M. Modugno et al., High-resolution measurements of line intensity, broadening and shift of CO $\mathsf{_2}$ around $\mathsf{2 \mu}$ m, The European Physical Journal D - Atomic, Molecular and Optical Physics, vol.6, issue.3, pp.327-359, 1999.
DOI : 10.1007/s100530050316

V. Dana, A. Valentin, A. Hamdouni, and L. Rothman, Line intensities and broadening parameters of the 11101 ??? 10002 band of ^12C^16O_2, Applied Optics, vol.28, issue.13, pp.2562-2568, 1989.
DOI : 10.1364/AO.28.002562

V. Devi, D. Benner, M. Smith, and C. Rinsland, Nitrogen broadening and shift coefficients in the 4.2???4.5-??m bands of CO2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.76, issue.3-4, pp.289-307, 2003.
DOI : 10.1016/S0022-4073(02)00057-2

F. Thibault, J. Boissoles, L. Doueen, R. Bouanich, J. Areas et al., 0 band and theoretical analysis, The Journal of Chemical Physics, vol.96, issue.7, pp.4945-53, 1992.
DOI : 10.1063/1.462737

M. Margottin-maclou, P. Dahoo, A. Henry, A. Valentin, and L. Henry, Self-, N2-, and O2-broadening parameters in the ??3 and ??1 + ??3 bands of 12C16O2, Journal of Molecular Spectroscopy, vol.131, issue.1, pp.21-35, 1988.
DOI : 10.1016/0022-2852(88)90102-6

Z. Alwahabi, J. Zetterberg, Z. Li, and M. Aldén, High resolution polarization spectroscopy and laser induced fluorescence of CO2 around 2??m, The European Physical Journal D, vol.40, issue.1, pp.41-48, 2007.
DOI : 10.1140/epjd/e2006-00275-y

M. Bulanin, V. Bulychev, and E. Khodos, Determination of the parameters of the vibrational-rotational lines in the 9.4 and 10.4 µm bands of CO 2 at different temperatures, Opt. Spectrosc, vol.48, pp.723-760, 1980.

R. Eng and A. Mantz, Tunable Diode Laser Spectroscopy of CO 2 in the 10-to 15- µm Spectral Region-Lineshape and Q-Branch Head Absorption Profile, J. Mol. Spectrosc, vol.74, pp.33-344, 1979.

J. Sirota, D. Reuter, and M. Mumma, Intensities and broadening coefficients for the Q branch of the 4v2???v1 + v2 (471.511 cm-1) band of CO2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.50, issue.2, pp.193-201, 1993.
DOI : 10.1016/0022-4073(93)90117-Z

B. Gentry and L. Strow, branch observed with a tunable diode laser, The Journal of Chemical Physics, vol.86, issue.10, pp.5722-5752, 1987.
DOI : 10.1063/1.452770

R. Toth, C. Miller, V. Devi, D. Benner, and L. Brown, Air-broadened halfwidth and pressure shift coefficients of 12 C 16 O 2 bands, J. Mol. Spectrosc, vol.246, pp.4750-7000, 2007.

V. Devi, D. Benner, L. Brown, C. Miller, and R. Toth, Line mixing and speed dependence in CO2 at 6348cm???1: Positions, intensities, and air- and self-broadening derived with constrained multispectrum analysis, Journal of Molecular Spectroscopy, vol.242, issue.2, pp.90-117, 2007.
DOI : 10.1016/j.jms.2007.02.018

V. Devi, D. Benner, L. Brown, C. Miller, and R. Toth, Line mixing and speed dependence in CO2 at 6227.9cm???1: Constrained multispectrum analysis of intensities and line shapes in the 30013???00001 band, Journal of Molecular Spectroscopy, vol.245, issue.1, pp.52-80, 2007.
DOI : 10.1016/j.jms.2007.05.015

A. Predoi-cross, A. Mckellar, D. Benner, V. Devi, R. Gamache et al., near 1600??nm This article is part of a Special Issue on Spectroscopy at the University of New Brunswick in honour of Colan Linton and Ron Lees., Canadian Journal of Physics, vol.87, issue.5, pp.517-552, 2009.
DOI : 10.1139/P08-137

A. Predoi-cross, W. Liu, C. Holladay, A. Unni, I. Schofield et al., Line profile study of transitions in the 30012???00001 and 30013???00001 bands of carbon dioxide perturbed by air, Journal of Molecular Spectroscopy, vol.246, issue.1, pp.98-112, 2007.
DOI : 10.1016/j.jms.2007.08.008

O. Gulidova, E. Asfin, R. Grigoriev, I. Filippov, and N. , Air pressure broadening and shifting of high-J lines of (00011) ??? (00001) band of 12C16O2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.111, issue.15, pp.2315-2335, 2010.
DOI : 10.1016/j.jqsrt.2010.04.027

J. Li, K. Liu, W. Zhang, W. Chen, and X. Gao, Pressure-induced line broadening for the (30012)???(00001) band of CO2 measured with tunable diode laser photoacoustic spectroscopy, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.109, issue.9, pp.1575-85, 2008.
DOI : 10.1016/j.jqsrt.2007.10.014

J. Li, G. Durry, J. Cousin, L. Joly, B. Parvitte et al., Tunable diode laser measurement of pressure-induced shift coefficients of CO2 around 2.05??m for Lidar application, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.112, issue.9, pp.1411-1420, 2011.
DOI : 10.1016/j.jqsrt.2011.01.030

URL : https://hal.archives-ouvertes.fr/hal-01132267

A. Farooq, J. Jeffries, and R. Hanson, High-pressure measurements of CO2 absorption near 2.7??m: Line mixing and finite duration collision effects, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.111, issue.7-8, pp.949-60, 2010.
DOI : 10.1016/j.jqsrt.2010.01.001

L. Joly, F. Gibert, B. Grouiez, A. Grossel, B. Parvitte et al., A complete study of CO2 line parameters around 4845cm???1 for Lidar applications, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.109, issue.3, pp.426-460, 2008.
DOI : 10.1016/j.jqsrt.2007.06.003

D. Long, K. Bielska, D. Lisak, D. Havey, M. Okumura et al., line shape in the spectrally isolated regime: Evidence of simultaneous Dicke narrowing and speed dependence, The Journal of Chemical Physics, vol.135, issue.6, p.64308, 2011.
DOI : 10.1063/1.3624527

J. Henningsen and H. Simonsen, The (2201???0000) Band of CO2 at 6348 cm???1: Linestrengths, Broadening Parameters, and Pressure Shifts, Journal of Molecular Spectroscopy, vol.203, issue.1, pp.16-27, 2000.
DOI : 10.1006/jmsp.2000.8157

R. Toth, L. Brown, C. Miller, M. Devi, V. Benner et al., Self-broadened widths and shifts of 12C16O2: 4750???7000cm???1, Journal of Molecular Spectroscopy, vol.239, issue.2, pp.243-71, 2006.
DOI : 10.1016/j.jms.2006.08.003

L. Régalia-jarlot, V. Zéninari, B. Parvitte, A. Grossel, X. Thomas et al., A complete study of the line intensities of four bands of CO2 around 1.6 and 2.0??m: A comparison between Fourier transform and diode laser measurements, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.101, issue.2, pp.325-363, 2006.
DOI : 10.1016/j.jqsrt.2005.11.021

T. Hikida, K. Yamada, M. Fukabori, T. Aoki, and T. Watanabe, Intensities and self-broadening coefficients of the CO2 Ro-vibrational transitions measured by a near-IR diode laser spectrometer, Journal of Molecular Spectroscopy, vol.232, issue.2, pp.202-214, 2005.
DOI : 10.1016/j.jms.2005.04.009

A. Predoi-cross, A. Unni, W. Liu, I. Schofield, C. Holladay et al., Line shape parameters measurement and computations for self-broadened carbon dioxide transitions in the 30012???00001 and 30013???00001 bands, line mixing, and speed dependence, Journal of Molecular Spectroscopy, vol.245, issue.1, pp.34-51, 2007.
DOI : 10.1016/j.jms.2007.07.004

A. Predoi-cross, W. Liu, R. Murphy, C. Povey, R. Gamache et al., Measurement and computations for temperature dependences of self-broadened carbon dioxide transitions in the 30012???00001 and 30013???00001 bands, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.111, issue.9, pp.1065-79, 2010.
DOI : 10.1016/j.jqsrt.2010.01.003

L. Barbu, T. Zéninari, V. Parvitte, B. Courtois, D. Durry et al., Line strengths and self-broadening coefficients of carbon dioxide isotopologues (13CO2 and 18O12C16O) near 2.04??m for the in situ laser sensing of the Martian atmosphere, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.98, issue.2, pp.264-76, 2006.
DOI : 10.1016/j.jqsrt.2005.05.089

URL : https://hal.archives-ouvertes.fr/hal-00069147

A. Predoi-cross, C. Luo, R. Berman, J. Drummond, and A. May, Line strengths, self-broadening, and line mixing in the 2000???0110???(???????)Q branch of carbon dioxide, The Journal of Chemical Physics, vol.112, issue.19, pp.8367-77, 2000.
DOI : 10.1063/1.481480

L. Gross and P. Griffiths, Pressure and temperature dependence of the self-broadened linewidths of the carbon dioxide laser bands, Applied Optics, vol.26, issue.11, pp.2250-2255, 1987.
DOI : 10.1364/AO.26.002250

V. Dana and A. Valentin, Determination of line parameters from FTS spectra, Applied Optics, vol.27, issue.21, pp.4450-4453, 1988.
DOI : 10.1364/AO.27.004450

G. Casa, R. Wehr, A. Castrillo, E. Fasci, and L. Gianfran, The line shape problem in the near-infrared spectrum of self-colliding CO[sub 2] molecules: Experimental investigation and test of semiclassical models, The Journal of Chemical Physics, vol.130, issue.18, p.184306, 2009.
DOI : 10.1063/1.3125965

R. Ely, J. Mccubbin, and T. K. , The Temperature Dependence of the Self-Broadened Half-Width of the P-20 Line in the 001???100 Band of CO_2, Applied Optics, vol.9, issue.5, pp.1230-1231
DOI : 10.1364/AO.9.001230

G. Fanjoux, B. Lavorel, and G. Millot, Collisional shifting and broadening coefficients for the rovibrational anisotropic lines of the ??1/2??2 fermi dyad in CO2 gas studied by stimulated Raman spectroscopy, Journal of Raman Spectroscopy, vol.29, issue.5, pp.391-398, 1998.
DOI : 10.1002/(SICI)1097-4555(199805)29:5<391::AID-JRS251>3.0.CO;2-N

URL : https://hal.archives-ouvertes.fr/hal-00399145

A. Farooq, J. Jeffries, and R. Hanson, CO2 concentration and temperature sensor for combustion gases using diode-laser absorption near 2.7????m, Applied Physics B, vol.28, issue.3-4, pp.619-647, 2008.
DOI : 10.1007/s00340-007-2925-y

R. Mihalcea, D. Baer, and R. Hanson, Diode-laser absorption measurements of CO_2 near 20 ??m at elevated temperatures, Applied Optics, vol.37, issue.36, pp.8341-8348, 1998.
DOI : 10.1364/AO.37.008341

J. Mandin, V. Dana, M. Allout, L. Régalia, A. Barbe et al., Line Intensities and Self-Broadening Coefficients in the 10012-10001 Band of 12 C 16 O 2 Centered at 2224, J. Mol. Spectrosc, vol.6571, issue.170, pp.604-611, 1995.

V. Zéninari, A. Vicet, B. Parvitte, L. Joly, and G. Durry, In situ sensing of atmospheric CO2 with laser diodes near 2.05 ??m: a spectroscopic study, Infrared Physics & Technology, vol.45, issue.3, pp.229-266, 2004.
DOI : 10.1016/j.infrared.2003.11.004

Q. Delière, L. Fissiaux, and M. Lepère, Absolute line intensities and self-broadening coefficients in the ??3?????1 band of carbon dioxide, Journal of Molecular Spectroscopy, vol.272, issue.1, pp.36-42, 2012.
DOI : 10.1016/j.jms.2012.01.002

L. Tubbs and D. Williams, Broadening of Infrared Absorption Lines at Reduced Temperatures: Carbon Dioxide???, Journal of the Optical Society of America, vol.62, issue.2, pp.284-293, 1972.
DOI : 10.1364/JOSA.62.000284

R. Menzies and D. Tratt, Differential Laser Absorption Spectrometry for Global Profiling of Tropospheric Carbon Dioxide: Selection of Optimum Sounding Frequencies for High-Precision Measurements, Applied Optics, vol.42, issue.33, pp.6569-77, 2003.
DOI : 10.1364/AO.42.006569

J. Aronson, V. Thüna, P. Butler, and J. , Tunable Diode Laser High Resolution Spectroscopic Measurements of the ??_2 Vibration of Carbon Dioxide, Applied Optics, vol.14, issue.5, pp.1120-1127, 1975.
DOI : 10.1364/AO.14.001120

R. Abrams, laser transition, Applied Physics Letters, vol.25, issue.10, pp.609-620, 1974.
DOI : 10.1063/1.1655330

M. Webber, S. Kim, S. Sander, D. Baer, R. Hanson et al., In situ combustion measurements of CO_2 by use of a distributed-feedback diode-laser sensor near 20 ??m, Applied Optics, vol.40, issue.6, pp.821-829, 2001.
DOI : 10.1364/AO.40.000821

L. Barbu, T. Parvitte, B. Zéninari, V. Vinogradov, I. Korablev et al., Diode laser spectroscopy of H2O and CO2 in the 1.877-??m region for the in situ monitoring of the Martian atmosphere, Applied Physics B, vol.122, issue.1, pp.133-173, 2006.
DOI : 10.1007/s00340-005-2020-1

C. Cousin, L. Doucen, R. Houdeau, J. Boulet, C. Henry et al., Air broadened linewidths, intensities, and spectral line shapes for CO_2 at 43 ??m in the region of the AMTS instrument, Applied Optics, vol.25, issue.14, pp.2434-2443, 1986.
DOI : 10.1364/AO.25.002434

T. Cai, G. Gao, X. Gao, W. Chen, and G. Liu, and CO in the 1.57 ??m region for combustion diagnostics, Molecular Physics, vol.108, issue.5, pp.539-584, 2010.
DOI : 10.1016/S0022-4073(97)00011-3

C. Corsi, D. Amato, F. , D. Rosa, M. Modugno et al., High-resolution investigation of the weak ?

G. Hörner, S. Lau, Z. Kantor, and H. Löhmannsröben, with tunable diode laser (TDL) spectroscopy in the NIR, The Analyst, vol.15, issue.8, pp.772-780, 2004.
DOI : 10.1039/B404552C

J. Li, G. Durry, J. Cousin, L. Joly, B. Parvitte et al., Self-induced pressure shift and temperature dependence measurements of CO2 at 2.05??m with a tunable diode laser spectrometer, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, vol.85, issue.1, pp.74-82, 2012.
DOI : 10.1016/j.saa.2011.09.016

M. Abubakar and J. Shaw, Carbon dioxide band intensities and linewidths in the 8???12-??m region, Applied Optics, vol.25, issue.7, pp.1196-203, 1986.
DOI : 10.1364/AO.25.001196

A. Henry, P. Dahoo, and A. Valentin, Line strengths and self-broadening parameters of the ^12C^16O_2 (10^01)I ??? (10^00)II transition, Applied Optics, vol.25, issue.19, pp.3516-3525, 1986.
DOI : 10.1364/AO.25.003516

D. Rank, U. Fink, and T. Wiggins, Measurements on spectra of gases of planetary interest II, Astrophys. J, vol.2, issue.143, pp.980-988, 1971.

E. Arié, N. Lacome, and A. Lévy, Measurement of CO_2 line broadening in the 104-??m laser transition at low temperatures, Applied Optics, vol.26, issue.9, pp.1636-1676, 1987.
DOI : 10.1364/AO.26.001636

F. Valero and C. Suárez, Intensities and half-widths at different temperatures for the 201III???000 band of CO2 at 4854 cm???1, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.22, issue.1, pp.93-102, 1979.
DOI : 10.1016/0022-4073(79)90110-9

T. Mccubbin and T. Mooney, A Study of the Strengths and Widths of Lines in the 9, J. Quant Spectrosc. Radiat. Transfer, vol.4, issue.8, pp.1255-64, 1968.

G. Tettemer and W. Planet, Intensities And Pressure-Broadened Widths Of CO 2 R- Branch Lines At 15 ?m From Tunable Laser Measurements, J. Quant. Spectrosc

W. Planet, G. Tettemer, and J. Knoll, Temperature dependence of intensities and widths of N2-broadened lines in the 15 ??m CO2 band from tunable laser measurements, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.20, issue.6, pp.547-56, 1978.
DOI : 10.1016/0022-4073(78)90025-0

R. Saint-loup, B. Lavorel, G. Millot, C. Wegner, and H. Berger, Enhancement of sensitivity in high-resolution stimulated Raman spectroscopy of gases: Applicaion to the 2??2 (1285 cm???1) band of CO2, Journal of Raman Spectroscopy, vol.67, issue.2, pp.77-83, 1990.
DOI : 10.1002/jrs.1250210203

A. Gambetta, D. Gatti, A. Castrillo, G. Galzerano, P. Laporta et al., m, Applied Physics Letters, vol.99, issue.25, p.251107, 2011.
DOI : 10.1063/1.3671081

C. Suárez and F. Valero, Temperature dependence of self-broadened halfwidths of CO2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.43, issue.4, pp.327-361, 1990.
DOI : 10.1016/0022-4073(90)90022-X

R. Brownsword, J. Salh, and I. Smith, ), rovibrational states and temperature, Rovibrational States and Temperature, pp.191-196, 1995.
DOI : 10.1039/FT9959100191

A. Predoi-cross, A. May, A. Vitcu, J. Drummond, J. Hartmann et al., Broadening and line mixing in the 20???00???01???10, 11???10???00???00 and 12???20???01???10 Q branches of carbon dioxide: Experimental results and energy-corrected sudden modeling, The Journal of Chemical Physics, vol.120, issue.22, pp.10520-10529, 2004.
DOI : 10.1063/1.1738101

C. Young and R. Chapman, Line-widths and band strengths for the 9??4- and 10??4-??m CO2 bands, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.14, issue.8, pp.679-90, 1974.
DOI : 10.1016/0022-4073(74)90115-0

V. Dana, J. Mandin, G. Guelachvili, Q. Kou, M. Morillion-chapey et al., Intensities and self-broadening coefficients of 12C16O2 lines in the laser band region, Journal of Molecular Spectroscopy, vol.152, issue.2, pp.328-369, 1992.
DOI : 10.1016/0022-2852(92)90073-W

E. Arié, N. Lacome, P. Arcas, and A. Levy, Oxygen- and air-broadened linewidths of CO_2, Applied Optics, vol.25, issue.15, pp.2584-91, 1986.
DOI : 10.1364/AO.25.002584

R. Toth and . Wavenumbers, Wavenumbers, strengths, and self-broadened widths of CO2 at 3 ??m, Journal of Molecular Spectroscopy, vol.53, issue.1, pp.1-140022, 1974.
DOI : 10.1016/0022-2852(74)90256-2

M. Ghysels, G. Durry, and N. Amarouche, Pressure-broadening and narrowing coefficients and temperature dependence measurements of CO2 at 2.68??m by laser diode absorption spectroscopy for atmospheric applications, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, vol.107, pp.55-61, 2013.
DOI : 10.1016/j.saa.2013.01.042

S. Drayson and C. Young, Band Strength and Line Half-Width of the 10

J. Geng, J. Lunine, and G. Atkinson, Absolute intensities and pressure-broadening coefficients of 2-??m CO_2 absorption features: intracavity laser spectroscopy, Applied Optics, vol.40, issue.15, pp.2551-60, 2001.
DOI : 10.1364/AO.40.002551

R. Toth, L. Brown, C. Miller, M. Devi, V. Benner et al., Spectroscopic database of CO2 line parameters: 4300???7000cm???1, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.109, issue.6, pp.906-927, 2008.
DOI : 10.1016/j.jqsrt.2007.12.004

R. Gamache and J. Hartmann, An intercomparison of measured pressure-broadening and pressure-shifting parameters of water vapor, Canadian Journal of Chemistry, vol.82, issue.6, pp.1013-1040, 2004.
DOI : 10.1139/v04-069

R. Gamache, J. Lamouroux, A. Laraia, J. Hartmann, and C. Boulet, Semiclassical calculations of half-widths and line shifts for transitions in the 30012???00001 and 30013???00001 bands of CO2, I: Collisions with N2, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.113, issue.11, pp.976-90, 2012.
DOI : 10.1016/j.jqsrt.2012.02.014

J. Lamouroux, R. Gamache, A. Laraia, J. Hartmann, and C. Boulet, Semiclassical calculations of half-widths and line shifts for transitions in the 30012???00001 and 30013???00001 bands of CO2 II: Collisions with O2 and air, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.113, issue.11, pp.991-1003, 2012.
DOI : 10.1016/j.jqsrt.2012.02.015

J. Lamouroux, R. Gamache, A. Laraia, J. Hartmann, and C. Boulet, Semiclassical calculations of half-widths and line shifts for transitions in the 30012???00001 and 30013???00001 bands of CO2. III: Self collisions, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.113, issue.12, pp.1536-1582, 2012.
DOI : 10.1016/j.jqsrt.2012.03.035

J. Hartmann, C. Boulet, and D. Robert, Collisional effects on molecular spectra : laboratory experiments and models, consequences for applications, 2008.

R. Gamache, J. Hartmann, and L. Rosenmann, Collisional broadening of water vapor lines???I. A survey of experimental results, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.52, issue.3-4, pp.481-99, 1994.
DOI : 10.1016/0022-4073(94)90175-9

R. Gamache, E. Arié, C. Boursier, and J. Hartmann, Pressure-broadening and pressure-shifting of spectral lines of ozone, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, vol.54, issue.1, pp.35-63, 1998.
DOI : 10.1016/S1386-1425(97)00202-3

N. Moskalenko and O. Zotov, New experimental investigation and refinement of transmission function of carbon dioxide: Line parameters (in Russian), Fiz. Atmos, Okeana, vol.13, pp.488-98, 1977.

R. Gamache and J. Lamouroux, The vibrational dependence of half-widths of CO 2 transitions broadened by N 2, J. Quant. Spectrosc. Radiat. Transfer, vol.2, issue.117, pp.93-103, 2012.

R. Gamache and J. Hartmann, Collisional parameters of H2O lines: effects of vibration, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.83, issue.2, pp.119-166, 2004.
DOI : 10.1016/S0022-4073(02)00296-0

R. Gamache and J. Lamouroux, Predicting accurate line shape parameters for CO2 transitions, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.130, pp.158-71, 2013.
DOI : 10.1016/j.jqsrt.2013.05.021

D. Lisak, J. Hodges, and R. Ciury?o, spectra measured by frequency-stabilized cavity ring-down spectroscopy, Physical Review A, vol.73, issue.1, p.12507, 2006.
DOI : 10.1103/PhysRevA.73.012507

D. Eu, J. Lemoine, B. Rohart, and F. , Infrared HCN Lineshapes as a Test of Galatry and Speed-Dependent Voigt Profiles, Journal of Molecular Spectroscopy, vol.212, issue.1, pp.96-110, 2002.
DOI : 10.1006/jmsp.2002.8520

N. Ngo, H. Tran, R. Gamache, and J. Hartmann, Pressure effects on water vapour lines: beyond the Voigt profile, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.130, issue.15, pp.2495-508, 2012.
DOI : 10.1063/1.3247898

G. Birnbaum, Microwave Pressure Broadening and Its Application to Intermolecular Forces, Adv. in Chem. Phys, vol.12, pp.487-548, 1967.
DOI : 10.1002/9780470143582.ch9

J. Bouanich and C. Brodbeck, Contribution des moments octupolaire et hexadecapolaire a l'elargissement des raies spectrales de molecules linearaires, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.14, issue.2, pp.141-51, 1974.
DOI : 10.1016/0022-4073(74)90006-5

R. Rogers and M. Yau, A Short Course in Cloud Physics, 1996.

G. Wagner, M. Birk, R. Gamache, and J. Hartmann, Collisional parameters of lines: effect of temperature, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.92, issue.2, pp.211-241, 2005.
DOI : 10.1016/j.jqsrt.2004.07.023

R. Gamache, A. Laraia, and J. Lamouroux, Half-widths, their temperature dependence, and line shifts for the HDO???CO2 collision system for applications to CO2-rich planetary atmospheres, Icarus, vol.213, issue.2, pp.720-750, 2011.
DOI : 10.1016/j.icarus.2011.03.021

P. Varanasi and S. Chudamani, The temperature dependence of lineshifts, linewidths and line intensities of methane at low temperatures, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.43, issue.1, pp.1-11, 1990.
DOI : 10.1016/0022-4073(90)90060-J

B. Grossmann and E. Browell, Spectroscopy of water vapor in the 720-nm wavelength region: Line strengths, self-induced pressure broadenings and shifts, and temperature dependence of linewidths and shifts, Journal of Molecular Spectroscopy, vol.136, issue.2, pp.264-94, 1989.
DOI : 10.1016/0022-2852(89)90336-6

B. Grossmann and E. Browell, Water-vapor line broadening and shifting by air, nitrogen, oxygen, and argon in the 720-nm wavelength region, Journal of Molecular Spectroscopy, vol.138, issue.2, pp.562-95, 1989.
DOI : 10.1016/0022-2852(89)90019-2

R. Gamache and L. Rothman, Temperature Dependence of Linewidths and Line Shifts, Paper O 26, Tenth Colloquium on High Resolution Molecular Spectroscopy, 1987.

M. Smith, C. Rinsland, V. Devi, and D. Benner, Temperature dependence of broadening and shifts of methane lines in the ??4 band, Spectrochimica Acta Part A: Molecular Spectroscopy, vol.48, issue.9, pp.1257-72, 1992.
DOI : 10.1016/0584-8539(92)80263-V

B. Frost, A theory of microwave lineshifts, Journal of Physics B: Atomic and Molecular Physics, vol.9, issue.6, pp.1001-1021, 1976.
DOI : 10.1088/0022-3700/9/6/023

V. Devi, D. Benner, M. Smith, and C. Rinsland, Temperature dependence of Lorentz air-broadening and pressure-shift coefficients of 12CH4 lines in the 2.3-??m spectral region, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.51, issue.3, pp.439-650022, 1994.
DOI : 10.1016/0022-4073(94)90146-5

M. Smith, V. Devi, D. Benner, and C. Rinsland, Temperature Dependence of Air-Broadening and Shift Coefficients of O3Lines in the ??1Band, Journal of Molecular Spectroscopy, vol.182, issue.2, pp.239-59, 1997.
DOI : 10.1006/jmsp.1996.7232

V. Devi, D. Benner, M. Smith, and C. Rinsland, Air-Broadening and Shift Coefficients of O 3 Lines in the ? 2 Band and Their Temperature Dependence, J

M. Birk and G. Wagner, Temperature-dependent air broadening of water in the 1250???1750cm???1 range, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.113, issue.11, pp.889-928, 2012.
DOI : 10.1016/j.jqsrt.2011.12.013