3 SMOS and Aquarius/SAC-D Missions
57
Johnson JT, Zhang M (1999) Theoretical study of the small slope approximation for ocean
polarimetric thermal emission. Wave Random Complex 37:2305–2316
Kerr YH, Fukami K, Skou N, Srokosz MA, Lagerloef GSE, Goutoule JM, Le Vine DM,
Martín-Neira M, Marczewski W, Laursen B, Gazdewich J, Barà J, Camps A (1995) Proceedings
of the Consultative Meeting on Soil Moisture and Ocean Salinity Measurement Requirements
and Radiometer Techniques (SMOS), ESA WPP-87, ESTEC, Noordwijk, The Netherlands
Kerr YH, Waldteufel P, Wigneron JP, Martinuzzi JM, Font J, Berger M (2001) Soil moisture from
space: the soil moisture and ocean salinity (SMOS) mission. IEEE Trans Geosci Rem Sens
39:1729–1735
Kim SB, Wentz F, LeVine D, Lagerloef GSE (2010) Simulation of sea surface salinity retrieval
with the Aquarius L-band radiometer. IEEE Trans Geosci Rem Sens (in press)
Klein LA, Swift CT (1977) An improved model for the dielectric constant of sea water at
microwave frequencies. IEEE J Ocean Eng 2:104–111.
Lagerloef GSE, Swift C, Le Vine D (1995) Sea surface salinity: the next remote sensing challenge.
Oceanography 8:44–50
Lagerloef GSE (2001) Satellite measurements of salinity. In: Steele J, Thorpe S, Turekian K (eds.)
Encyclopedia of Ocean Sciences, Academic Press, London, pp. 2511–2516
Lagerloef GSE (2002) Introduction to the special section: the role of surface salinity on
upper ocean dynamics, air sea interaction and climate. J Geophys Res 107(C12):8000,
doi:10.1029/2002JC001669
Lagerloef GSE, Colomb F, Le Vine D, Wentz F, Yueh S, Ruf C, Lilly J, Gunn J, Chao Y,
deCharon A, Feldman G, Swift C (2008) The Aquarius/SAC-D mission: designed to meet the
salinity remote-sensing challenge. Oceanography 20:68–81
Lagerloef G, Boutin J, Chao Y, Delcroix T, Font J, Niiler P, Reul N, Riser S, Schmitt R, Stammer D,
Wentz F (2010) Resolving the global surface salinity field and variations by blending satellite and in situ observations. In: Hall J, Harrison DE, Stammer D (eds.) Proceedings of
OceanObs’09: Sustained Ocean Observations and Information for Society (Vol. 2), Venice,
Italy, 21–25 September 2009, ESA Publication WPP-306
Lang RH, Tarkocin Y, Utku C, Le Vine DM (2008) Recent results on the accurate measurements of
the dielectric constant of seawater at 1.413 GHz. Geoscience and Remote Sensing Symposium.
IGARSS 2008. IEEE International, Vol. IV, Boston, MA, pp. 950–953
Le Vine DM, Zaitzeff JB, D’Sa EJ, Miller JL, Swift C, Goodberlet M (2000) Sea surface salinity:
toward an operational remote-sensing system. In: Halpern D (ed.) Satellites, Oceanography and
Society, Elsevier Oceanography Series 63, Amsterdam, pp. 321–335
Le Vine DM, Lagerloef GSE, Colomb R, Yueh S, Pellerano F (2007) Aquarius: an instrument to monitor sea surface salinity from space. IEEE Trans Geosci Rem Sens 45:
2040–2050
Le Vine DM, Abraham S (2002) The effect of the ionosphere on remote sensing of sea surface salinity from space: absorption and emission at L-band. IEEE Trans Geosci Rem Sens
40:771–782
Le Vine DM, Abraham S (2004) Galactic noise and passive microwave remote sensing from space
at L-band. IEEE Trans Geosci Rem Sens 42:119–129
Le Vine DM, Abraham S, Wentz F, Lagerloef GSE (2005) Impact of the sun on remote sensing of sea surface salinity from space. Proc Internat Geosci Rem Sens Symp 1:288–291,
doi:10.1109/IGARSS.2005.1526164
Martín-Neira M, Goutoule JM (1997) A two-dimensional aperture-synthesis radiometer for soil
moisture and ocean salinity observations. ESA Bull 92:95–104
Martín-Neira M, Ribó S, Martín-Polegre AJ (2002) Polarimetric mode of MIRAS. IEEE Trans
Geosci Rem Sens 40:1755–1768
McMullan KD, Brown MA, Martín-Neira M, Ritts W, Ekholm S, Marti J, Lemanczyk J (2008)
SMOS: the payload. IEEE Trans Geosci Rem Sens 46:594–605
Meissner T, Wentz FJ (2003) The complex dielectric constant of pure and sea water from
microwave satellite observations. IEEE Trans Geosci Remote Sens 42:1836–1849
Précédent

- 73/378

Suivant