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%%%%%%%%%%%%%%%%%%% raccourcis NASA ads %%%%%%%%%%%%%%%%

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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%


@article{Forg:99,
author = { Forget, F. and Hourdin, F. and Fournier, R. and Hourdin, C. and Talagrand, O. and Collins, M.  and Lewis, S. R. and Read, P. L.  and  Huot., J-P.},
journal = jgr,
pages = {24,155-24,176},
title = {Improved general circulation models of the {Martian}
atmosphere from the surface to above 80~km},
volume = {104},
year = {1999}
}

@article{Hour:92,
author = {Hourdin , Fr\'ed\'eric},
journal = jgr,
number = {E11},
pages = {18,319-18,335},
title = {A new representation of the \protect{CO$_2$ 15~$\mu$m} band for a \protect{Martian} General Circulation Model},
volume = {97},
year = {1992}
}

@misc{Hour:00b,
   author = {Hourdin, C. and Dufresnes, J-L. and Fournier, R. and Hourdin, F.},
   howpublished = {Article in preparation},
   title = {Net exchange reformulation of radiative transfer in the {CO$_2$} 15$\mu$m band on Mars},
   year = {2000}
}

@ARTICLE{Dufr:05,
   author = {{Dufresne}, J.-L. and {Fournier}, R. and {Hourdin}, C. and
{Hourdin}, F. },
title = "{Net Exchange Reformulation of Radiative Transfer in the
{CO$_{2}$} 15-{$\mu$}m Band on Mars.}",
journal = {Journal of Atmospheric Sciences},
year = 2005,
volume = 62,
pages = {3303-3319},
}

@article{Lewi:99,
author = {Lewis, S. R. and Collins, M.  and Read, P. L. and Forget, F. and Hourdin, F. and Fournier, R. and Hourdin, C. and Talagrand, O. and  Huot., J-P.},
journal = jgr,
pages = {24,177-24,194},
title = {A Climate Database for {Mars}},
volume = {104},
year = {1999}
}

@ARTICLE{Made:11,
   author = {{Madeleine}, J.-B. and {Forget}, F. and {Millour}, E. and {Montabone}, L. and 
	{Wolff}, M.~J.},
    title = "{Revisiting the radiative impact of dust on Mars using the LMD Global Climate Model}",
  journal = {Journal of Geophysical Research (Planets)},
 keywords = {Hydrology: Model calibration (3333), Atmospheric Processes: Clouds and aerosols, Atmospheric Processes: Global climate models (1626, 4928), Atmospheric Processes: Radiative processes, Planetary Sciences: Solar System Objects: Mars},
     year = 2011,
    month = nov,
   volume = 116,
      eid = {E11010},
    pages = {11010},
      doi = {10.1029/2011JE003855},
   adsurl = {http://adsabs.harvard.edu/abs/2011JGRE..11611010M}
}

@article{Toon:89,
author = {Toon , O. B. and McKay , C. P. and Ackerman , T. P. and Santhanam , K.},
journal = jgr,
pages = {16,287-16,301},
title = {Rapid calculation of radiative heating rates and photodissociation rates in inhomogeneous multiple scattering atmospheres},
volume = {94},
year = {1989}
}

@ARTICLE{Wolf:09,
   author = {{Wolff}, M.~J. and {Smith}, M.~D. and {Clancy}, R.~T. and {Arvidson}, R. and 
	{Kahre}, M. and {Seelos}, F. and {Murchie}, S. and {Savij{\"a}rvi}, H.
	},
    title = "{Wavelength dependence of dust aerosol single scattering albedo as observed by the Compact Reconnaissance Imaging Spectrometer}",
  journal = {Journal of Geophysical Research (Planets)},
     year = 2009,
   volume = 114,
   number = {E13},
    pages = {0-+},
      doi = {10.1029/2009JE003350},
}

@article{Hour:93,
author = {Hourdin , F. and Le Van , Phu and Forget , F. and Talagrand , O.},
journal = jas,
pages = {3625-3640},
title = {Meteorological variability and the annual surface pressure cycle on \protect{Mars}},
volume = {50},
year = {1993}
}

@article{Lott:97,
author = {Lott, F. and Miller, M.},
journal = qjrms,
pages = {101-128},
title = {A new sub-grid scale orographic drag parametrization: its formulation and testing.},
volume = {123},
year = {1997}
}

@article{Forg:98,
author = {Forget, F. and Hourdin, F. and Talagrand, O.},
journal = {Icarus},
pages = {302-316},
title = {{CO$_2$} snow fall on {Mars}: Simulation with a general circulation model},
volume = {131},
year = {1998}
}

@article{Hour:99,
author = {Hourdin , F. and Armengaud , A.},
journal = mwr,
pages = {822--837},
title = {Test of a hierarchy of finite-volume schemes for transport of trace species in an atmospheric general circulation model},
volume = {127},
year = {1999}
}

@ARTICLE{Mont:04jgr,
   author = {{Montmessin}, F. and {Forget}, F. and {Rannou}, P. and
{Cabane}, M. and 
	{Haberle}, R.~M.},
    title = "{Origin and role of water ice clouds in the Martian water
cycle as inferred from a general circulation model}",
  journal = {Journal of Geophysical Research (Planets)},
     year = 2004,
   volume = 109,
   number = "E18",
    pages = {10004},
}

@ARTICLE{Lefe:04,
   author = {Lef\`evre, F. and Lebonnois, S. and Montmessin, F.  and Forget,
F.  },
    title = "{Three-dimensional modeling of ozone on Mars }",
  journal = {Journal of Geophysical Research (Planets)},
     year = 2004,
   volume = 109,
    pages = {E07004},
}

@ARTICLE{Lefe:08,
   author = {{Lef{\`e}vre}, F. and {Bertaux}, J.-L. and {Clancy}, R.~T. and 
	{Encrenaz}, T. and {Fast}, K. and {Forget}, F. and {Lebonnois}, S. and 
	{Montmessin}, F. and {Perrier}, S.},
    title = "{Heterogeneous chemistry in the atmosphere of Mars}",
  journal = {Nature},
     year = 2008,
   volume = 454,
    pages = {971-975},
      doi = {10.1038/nature07116},
}

@ARTICLE{Ange:05,
   author = {{Angelats i Coll}, M. and {Forget}, F. and {L{\'o}pez-Valverde}, M.~A. and 
   {Gonz{\'a}lez-Galindo}, F.},
       title = "{The first Mars thermospheric general circulation model: The Martian atmosphere from the ground to 240 km}",
         journal = grl,
      year = 2005,
     volume = 32,
         pages = {4201},
       doi = {10.1029/2004GL021368},
}

@ARTICLE{Gonz:05,
   author = {{Gonz{\'a}lez-Galindo}, F. and {L{\'o}pez-Valverde}, M.~A.
and {Angelats i Coll}, M. and {Forget}, F.},
    title = "{Extension of a Martian general circulation model to
thermospheric altitudes: UV heating and photochemical models}",
  journal = {Journal of Geophysical Research (Planets)},
     year = 2005,
   volume = 110,
   number = {E9},
    pages = {9008},
      doi = {10.1029/2004JE002312},
}

@ARTICLE{Gonz:09a,
   author = {{Gonz{\'a}lez-Galindo}, F. and {Forget}, F. and {L{\'o}pez-Valverde}, M.~A.  and {Angelats i Coll}, M. and {Millour}, E.},
    title = "{A Ground-to-Exosphere Martian General Circulation Model. 1. Seasonal, Diurnal and Solar Cycle Variation of Thermospheric Temperatures}",
  journal = {Journal of Geophysical Research (Planets)},
     year = 2009,
   volume = 114,
   number = {E13},
      eid = {E04001},
    pages = {4001},
      doi = {10.1029/2008JE003246},
}

@ARTICLE{Gonz:09b,
   author = {{Gonz{\'a}lez-Galindo}, F. and {Forget}, F. and {L{\'o}pez-Valverde}, M.~A.  and {Angelats i Coll}, M.},
    title = "{A Ground-to-Exosphere Martian General Circulation Model. 
2. The Atmosphere During Perihelion Conditions: Thermospheric Polar
Warming
}",
  journal = {Journal of Geophysical Research (Planets)},
volume = 114,
   number = {E13},
    pages = {E08004},
      doi = {10.1029/2008JE003277},
     year = 2009,
}

