Sensitivity of present-day climate to astronomical forcing

[1]  A. Oort,et al.  Global atmospheric circulation statistics, 1958-1973 , 1994 .

[2]  J. Duplessy,et al.  Paleoclimatic variability at frequencies ranging from 1 cycle per 10 000 years to 1 cycle per 1000 years: Evidence for nonlinear behaviour of the climate system , 1988 .

[3]  A. Cazenave,et al.  Earth rotation: Solved and unsolved problems , 1986 .

[4]  Dennis L. Hartmann,et al.  Earth Radiation Budget data and climate research , 1986 .

[5]  J. Kutzbach,et al.  Milankovitch forcing of fluctuations in the level of tropical lakes from 18 to 0 kyr BP , 1985, Nature.

[6]  K. Liou,et al.  A Two-Dimensional Radiation-Turbulence Climate Model. I: Sensitivity to Cirrus Radiative Properties , 1984 .

[7]  A. Arking,et al.  Climate Studies with a Multi-Layer Energy Balance Model. Part I: Model Description and Sensitivity to the Solar Constant , 1982 .

[8]  Jean Jouzel,et al.  Deuterium excess in an East Antarctic ice core suggests higher relative humidity at the oceanic surface during the last glacial maximum , 1982, Nature.

[9]  Graeme L. Stephens,et al.  Earth radiation budgets , 1981 .

[10]  G. Ohring,et al.  The Effects of Surface Evaporation Parameterizations on Climate Sensitivity to Solar Constant Variations , 1981 .

[11]  G A Chapman,et al.  Observations of solar irradiance variability. , 1981, Science.

[12]  Alan Robock,et al.  The seasonal cycle of snow cover, sea ice and surface albedo , 1980 .

[13]  John Z. Imbrie,et al.  Modeling the Climatic Response to Orbital Variations , 1980, Science.

[14]  A. Berger Spectrum of climatic variations and their causal mechanisms , 1979 .

[15]  André Berger,et al.  Long-term variations of daily insolation and Quaternary climatic changes , 1978 .

[16]  A. L. BERGER,et al.  Support for the astronomical theory of climatic change , 1977, Nature.

[17]  M. A. Rennick The Parameterization of Tropospheric Lapse Rates in Terms of Surface Temperature , 1977 .

[18]  J. D. Hays,et al.  Variations in the Earth's Orbit: Pacemaker of the Ice Ages , 1976, Science.

[19]  J. Joseph,et al.  The delta-Eddington approximation for radiative flux transfer , 1976 .

[20]  J. Dave,et al.  Effect of Aerosols on the Transfer of Solar Energy Through Realistic Model Atmospheres. Part I: Non-Absorbing Aerosols , 1973 .

[21]  W. L. Smith,et al.  Note on the Relationship Between Total Precipitable Water and Surface Dew Point , 1966 .

[22]  B. Caldonazzo Forze Ponderomotrici Esercitate da un Campo Magnetico Omogeneo so una Corrente Continua Rettilinea Indefinita , 1911 .

[23]  Y. Fouquart Radiative Transfer in Climate Models , 1988 .

[24]  A. Berger,et al.  Global Climatic Changes and Astronomical Theory of Paleoclimates , 1986 .

[25]  André Berger,et al.  Milankovitch and Climate , 1984, NATO ASI Series.

[26]  A. Berger Accuracy and frequency stability of the Earth's orbital elements during the Quaternary , 1984 .

[27]  J. Jouzel,et al.  Late-Glacial Maximum-Holocene Atmospheric and Ice-Thickness Changes from Antarctic Ice-Core Studies , 1984, Annals of Glaciology.

[28]  P. Pestiaux,et al.  Accuracy and stability of the Quaternary terrestrial insolation , 1984 .

[29]  Thomas K. Van Heuklon Estimating atmospheric ozone for solar radiation models , 1979 .

[30]  A. Berger Insolation signatures of quaternary climatic changes , 1979 .

[31]  J. Lenoble REVIEW OF RADIATIVE TRANSFER METHODS IN SCATTERING ATMOSPHERES , 1977 .