Free Access
Issue
A&A
Volume 428, Number 1, December II 2004
Page(s) 261 - 285
Section Celestial mechanics and astrometry
DOI https://doi.org/10.1051/0004-6361:20041335
Published online 23 November 2004
  1. Adhémar, J. 1842, Révolutions de la mer, (Paris: Bachelier) [Google Scholar]
  2. Agassiz, L. 1840, Études sur les glaciers (Paris) [Google Scholar]
  3. Arnold, V. I., Kozlov, V. V., & Neishtadt, A. I. 1988, Mathematical aspects of classical and celestial mechanics, Dyn. Systems III, ed. V. I. Arnold (New York: Springer) [Google Scholar]
  4. Berger, A. L. 1978, J. Atmos. Sci., 35, 2362 [Google Scholar]
  5. Bills, B. G. 1994, Geophys. Res. Lett., 21(3), 177 [NASA ADS] [CrossRef] [Google Scholar]
  6. Bretagnon, P. 1974, A&A, 30, 141 [NASA ADS] [Google Scholar]
  7. Bretagnon, P. 1984, Celest. Mech., 34, 193 [NASA ADS] [CrossRef] [Google Scholar]
  8. Bretagnon, P., & Simon, J.-L. 1990, A&A, 239, 387 [NASA ADS] [Google Scholar]
  9. Brouwer, D., & Van Woerkom, A. J. J. 1950, Astron. Papers Am. Ephem., XIII, Part II, 81 [Google Scholar]
  10. Chapman, S., & Lindzen, R. S. 1970, Atmospheric tides (Dordrecht: D. Reidel) [Google Scholar]
  11. Chirikov, B. 1979, Phys. Rep., 52, 263 [NASA ADS] [CrossRef] [Google Scholar]
  12. Correia, A., & Laskar, J. 2003, J. Geophys. Res., 108(E11), 5123 [Google Scholar]
  13. Correia, A., Laskar, J., & Néron de Surgy, O. 2003, Icarus, 163, 1 [NASA ADS] [CrossRef] [Google Scholar]
  14. Croll, J. 1890, Climate and Time (London) [Google Scholar]
  15. Darwin, G. H. 1880, Philos. Trans. R. Soc. London, 171, 713 [NASA ADS] [CrossRef] [Google Scholar]
  16. Dickey, J. O., Bender, P. L., Faller, et al. 1994, Science, 265, 182 [NASA ADS] [Google Scholar]
  17. Duriez, L. 1977, A&A, 54, 93 [NASA ADS] [Google Scholar]
  18. Egbert, G. D., & Ray, R. D. 2000, Nature, 405, 775 [NASA ADS] [CrossRef] [Google Scholar]
  19. Fienga, A., & Simon, J.-L. 2004, submitted [Google Scholar]
  20. Forte, A., & Mitrovica, J. X. 1997, Nature, 390, 676 [NASA ADS] [CrossRef] [Google Scholar]
  21. Gradstein, F., Ogg, J., & Smith, A. 2004, A Geologic Time Scale 2004 (UK: Cambridge University Press), in press [Google Scholar]
  22. Haretu, S. C. 1885, Annales de l'Observatoire de Paris, 18, I1 [Google Scholar]
  23. Harzer, P. 1895, Die Säcularen veränderungen der bahnen der grossen planeten, Fürstlich Jablonowski'schen Gesellschaft, Leipzig [Google Scholar]
  24. Hays, J. D., Imbrie, J., & Schackleton, N. J. 1976, Science, 194, 1121 [NASA ADS] [CrossRef] [PubMed] [Google Scholar]
  25. Hill, G. 1897, AJ, 17(11), 81 [NASA ADS] [CrossRef] [Google Scholar]
  26. Imbrie, J. 1982, Icarus, 50, 408 [NASA ADS] [CrossRef] [Google Scholar]
  27. Imbrie, J., & Imbrie, K. P. 1979, Ice Ages: Solving the Mystery (MA: Harvard University Press) [Google Scholar]
  28. Ito, T., & Tanikawa, K. 2002, MNRAS, 336, 483 [NASA ADS] [CrossRef] [Google Scholar]
  29. Ito, T., Masuda, K., Hamano, Y., & Matsui, T. 1995, J. Geophys. Res., 100, 15147 [NASA ADS] [CrossRef] [Google Scholar]
  30. Jeffreys, H. 1920, Phil. Trans. R. Soc. London, Ser. A, 221, 239 [Google Scholar]
  31. Jeffreys, H. 1976, The Earth, Its Origin, History, and Physical Constitution, 6th ed. (Cambridge, UK: Cambridge University Press) [Google Scholar]
  32. Kinoshita, H. 1977, Cel. Mech., 15, 277 [Google Scholar]
  33. Lagrange, J. L. 1774, Oeuvres complètes, t. IV, Gauthier-Villars, Paris, 1869, 111 [Google Scholar]
  34. Lagrange, J. L. 1776, Oeuvres complètes, t. IV, Gauthier-Villars, Paris, 1869, 255 [Google Scholar]
  35. Lagrange, J. L. 1777, Oeuvres complètes, t. VI, Gauthier-Villars, Paris, 1873, 633 [Google Scholar]
  36. Lagrange, J. L. 1781, Oeuvres complètes, t. V, Gauthier-Villars, Paris, 1870, 125 [Google Scholar]
  37. Lagrange, J. L. 1782, Oeuvres complètes, t. V, Gauthier-Villars, Paris, 1870, 211 [Google Scholar]
  38. Lambeck, K. 1980, The Earth's variable rotation (UK: Cambridge University Press) [Google Scholar]
  39. Lambeck, K. 1980, Geophysical Geodesy (UK: Oxford University Press) [Google Scholar]
  40. Laplace, P. S. 1773-1776, Oeuvres complètes, t. VIII, Gauthier-Villars, Paris, 1891, 199 [Google Scholar]
  41. Laplace, P. S. 1776, Oeuvres complètes, t. VIII, Gauthier-Villars, Paris, 1891, 369 [Google Scholar]
  42. Laskar, J. 1984, Théorie générale planétaire: Eléments orbitaux des planètes sur 1 million d'années, Thèse, Observatoire de Paris [Google Scholar]
  43. Laskar, J. 1985, A&A, 144, 133 [NASA ADS] [Google Scholar]
  44. Laskar, J. 1986, A&A, 157, 59 [NASA ADS] [Google Scholar]
  45. Laskar, J. 1988, A&A, 198, 341 [NASA ADS] [Google Scholar]
  46. Laskar, J. 1989, Nature, 338, 237 [NASA ADS] [CrossRef] [Google Scholar]
  47. Laskar, J. 1990, Icarus, 88, 266 [NASA ADS] [CrossRef] [Google Scholar]
  48. Laskar, J. 1992, in Chaos, resonance and collective dynamical phenomena in the solar system, Ferraz-Mello, S. (1) (Kluwer Acad. Publ.), IAU Symp., 152 [Google Scholar]
  49. Laskar, J. 1999, Phil. Trans. R. Soc. Lond. A., 357, 1735 [NASA ADS] [CrossRef] [Google Scholar]
  50. Laskar, J. 1999, Introduction to frequency map analysis, in NATO ASI 533 3DHAM95, S'Agaro, Spain, C. Simò (Kluwer), 134 [Google Scholar]
  51. Laskar, J. : 2001, Astronomical Solutions for Paleoclimate Studies,. AGU Fall Meeting 2001 Abstracts U11A-01 [Google Scholar]
  52. Laskar, J. 2003, Ann. Henri Poincaré, 4, Suppl. 2, S693 [Google Scholar]
  53. Laskar, J. 2003, in Hamiltonian systems and Fourier analysis, ed. Benest et al. (Taylor, Francis), in press [Google Scholar]
  54. Laskar, J., Joutel, F., & Boudin, F. 1993, A&A, 270, 522 [NASA ADS] [Google Scholar]
  55. Laskar, J., & Robutel, P. 2001, Celest. Mech., 80, 39 [NASA ADS] [CrossRef] [Google Scholar]
  56. Laskar, J., Correia, A. C. M., Gastineau, M., et al. 2004, Icarus, 170, 343 [NASA ADS] [CrossRef] [Google Scholar]
  57. Le Verrier, U. 1856, Ann. Obs. Paris, II, Mallet-Bachelet, Paris [Google Scholar]
  58. Levrard, B., & Laskar, J. 2003, Journal Geophys. Int., 154, 970 [Google Scholar]
  59. Lourens, L. J., Wehausen, R., & Brumsack, H. J. 2001, Nature, 409, 1029 [NASA ADS] [CrossRef] [PubMed] [Google Scholar]
  60. Lourens, L. J., Hilgen, F. J., Shackleton, N. J., Laskar, J., & Wilson, D. 2004, in The Neogene Period, ed. F. Gradstein, J. Ogg, & A. Smith, A Geologic Time Scale 2004 (UK: Cambridge University Press), in press [Google Scholar]
  61. Lumb, L. I., & Aldridge, K. D. 1991, J. Geomagn. Geoelectr., 43, 93 [CrossRef] [Google Scholar]
  62. MacCarthy, D. D. 1992, IERS Standards, IERS Technical note 13, Observatoire de Paris [Google Scholar]
  63. MacCarthy, D. D., & Petit, G. 2004, IERS Standards, IERS Technical note 13, Observatoire de Paris [Google Scholar]
  64. Mignard, F. 1979, The Moon and the Planets, 20, 301 [Google Scholar]
  65. Mignard, F. 1980, The Moon and the Planets, 23, 185 [Google Scholar]
  66. Mignard, F. 1981, The Moon and the Planets, 24, 189 [NASA ADS] [CrossRef] [Google Scholar]
  67. Milani, A., Nobili, A. N., & Carpino, M. 1987, A&A, 172, 265 [NASA ADS] [Google Scholar]
  68. Milankovitch, M. 1941, Kanon der Erdbestrahlung und seine Andwendung auf das Eiszeitenproblem, Royal Serbian Academy [Google Scholar]
  69. Mitrovica, J. X., & Forte, A. 1995, Geophys. J. Int., 121, 21 [NASA ADS] [CrossRef] [Google Scholar]
  70. Néron de Surgy, O., & Laskar, J. 1997, A&A, 318, 975 [NASA ADS] [Google Scholar]
  71. Newhall, X. X., Standish, E. M., & Williams, J. G. 1983, A&A, 125, 150 [NASA ADS] [Google Scholar]
  72. Olsen, P., & Kent, D. 1999, Phil. Trans. R. Soc. London, Ser. A., 357, 1761 [Google Scholar]
  73. Pälike, H. 2002, Thesis, University of Cambridge [Google Scholar]
  74. Pälike, H., & Shackleton, N. J. 2001, EPSL, 400, 1029 [Google Scholar]
  75. Pälike, H., Laskar, J., & Shackleton, N. J. 2004, Geological constraints on the chaotic diffusion of the Solar System, Geology, in press [Google Scholar]
  76. Pijpers, F. P. 1998, MNRAS, 297, L76 [NASA ADS] [CrossRef] [Google Scholar]
  77. Pilgrim, L. 1904, Versuch einer rechnerischen behandlung des eiszeitenproblems. Jahreshefte fur vaterlandische Naturkunde in Wurttemberg, 60 [Google Scholar]
  78. Poincaré, H. 1893, Méthodes nouvelles de la mécanique céleste, (Paris: Gauthier-Villars), Vol. II [Google Scholar]
  79. Poincaré, H. 1910, Bull. Astron., 27, 321 [Google Scholar]
  80. Pontécoulant, G. de 1834, Théorie Analytique du Système du Monde, t. III, Bachelier, Paris [Google Scholar]
  81. Quinn, T. R., Tremaine, S., & Duncan, M. 1991, AJ, 101, 2287 [NASA ADS] [CrossRef] [Google Scholar]
  82. Rochester, M. G. 1976, Geophys. J. R. A. S., 46, 109 [NASA ADS] [CrossRef] [Google Scholar]
  83. Rubincam, D. P. 1990, Science, 248, 720 [NASA ADS] [CrossRef] [PubMed] [Google Scholar]
  84. Rubincam, D. P. 1995, Paleoceanography, 10, 365 [NASA ADS] [CrossRef] [Google Scholar]
  85. Saha, P., & Tremaine, S. 1994, AJ, 108 (5), 1962 [Google Scholar]
  86. Sharav, S. G., & Boudnikova, N. A. 1967a, Bull. I.T.A, XI-4(127), 231 [Google Scholar]
  87. Sharav, S. G., & Boudnikova, N. A. 1967b, Trud. I.T.A, XIV, 48 [Google Scholar]
  88. Standish, E. M. 1998, JPL planetary and Lunar ephemerides, DE405/LE405. JPL IOM 312.F-98-048, Pasadena [Google Scholar]
  89. Stockwell, J. N. 1873, Memoir on the secular variations of the elements of the eight principal planets. Smith. Contr. Knowledge, Washington, 18 [Google Scholar]
  90. Sussman, G. J., & Wisdom, J. 1992, Science, 257, 56 [NASA ADS] [CrossRef] [PubMed] [Google Scholar]
  91. Touma, J., & Wisdom, J. 1994, AJ, 108, 1943 [NASA ADS] [CrossRef] [Google Scholar]
  92. Varadi, F., Bunnegar, B., & Ghil, M. 2003, ApJ, 592, 620 [NASA ADS] [CrossRef] [Google Scholar]
  93. Vernekar 1972, Long-period global variations of incoming solar radiation, Meteorol. Monogr., 12 [Google Scholar]
  94. Volland, H. 1978, Earth's rotation from eons to days, ed. Brosche and Sündermann (Springer), 62 [Google Scholar]
  95. Williams, D. M., Kasting, J. F., & Frakes, L. A. 1998, Nature, 396, 453 [NASA ADS] [CrossRef] [Google Scholar]
  96. Williams, J. G., Boggs, D. H., Yoder, C. F., Ratcliff, J. T., & Dickey, J. O. 2001, J. Geophys. Res., 106, 27933 [NASA ADS] [CrossRef] [Google Scholar]
  97. Wisdom, J., & Holman, M. 1991, AJ, 102(4), 128 [Google Scholar]
  98. Yoder, C. F. 1995, Astrometric and geodetic properties of Earth and the Solar System, in ed. T. J. Ahrens, Global Earth Physics: A Handbook of Physical Constants, American Geophysical Union, Washington DC, 1 [Google Scholar]
  99. Zachos, J. C., Shackleton, N. J., Revenaugh, J. S., Pälike, H., & Flower, B. P. 2001, Science, 292, 274 [NASA ADS] [CrossRef] [PubMed] [Google Scholar]
  100. Zachos, J. C., Pagani, M., Sloan, L., Thomas, E., & Billups, K. 2001, Science, 292, 686 [NASA ADS] [CrossRef] [PubMed] [Google Scholar]

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