[1] Melchior P, Ducarme B. Detection of inertial gravity oscillations in the Earth's core with a superconducting gravimeter at Brussels. Phys Earth Planet Inter, 1986, 42: 129~134[2] Aldridge K D, Lumb L I. Inertial waves in the Earth's fluid outer core. Nature, 1987, 325: 421~423[3] Smylie D E. The inner core translational triplet and the density near Earth's center. Science, 1992, 255: 1678~1682[4] Courtier N, Ducarme B, Goodkind J, et al. Global superconducting gravimeter observations and the search for the translational modes of the inner core. Phys Earth Planet Inter, 2000, 117: 3~20[5] Crossley D J, Rochester M, Peng Z. Slichter modes and Love numbers. Geophys Res Lett, 1992, 19: 1679~1682[6] Hinderer J, Crossley D,Jensen O. A search for the Slichter triplet in superconducting gravimeter data. Phys Earth Planet Inter,1995, 90: 183~195[7] Xu Jian-Qiao, Sun He-Ping. Advances in the study on the effects of the Earth's fluid outer core. Advance in the Earth Sciences (in Chinese), 2002, 17(5): 664~669[8] Xu Jian-Qiao, Sun He-Ping. Earth's deformation due to the dynamical perturbations of the fluid outer core. Acta Seismologica Sinca, 2002, 15(4): 414~424[9] Xu Jian-Qiao, Sun He-Ping. Deformation response of a SNREI Earth to surface loads and tidal forces. Chinese J Geophys(in Chinese), 2003,46(3):328~343[10] Dehant V. Tidal parameters for an inelastic Earth. Phys Earth Planet Inter, 1987, 49: 97~116[11] Neuberg J, Hinderer J, Zurn W. Stacking gravity tide observations in central Europ for the retrieval of thecomplex eigenfrequency of the nearly diurnal free wobbl. Geophy J R astr Soc, 1987, 91: 853~868[12] Cummins P R, Wahr J M. A study of the Earth's free core nutation using international deployment of accelerometers gravity data. J Geophys Res,1993, 98(B2): 2091~2103[13] Defraigne P, Dehant V, Hinderer J. Staking gravity tide measurements and nutation observations in order to determine the complex eigenfrequency of nearly diurnal free wobble. J Geophys Res,1994, 99 (B5): 9203~9213[14] Xu Jian-Qiao,Hsu Houtse, Sun He-Ping,et al. Investigation of the Earth's nearly diurnal free wobble resonance using tidal gravity observations with superconducting gravimeter. Chinese J Geophys (in Chinese), 1999, 42(5):599~608[15] Xu Jian-Qiao, Sun He-Ping, Luo Shao-Cong. Influence of the ocean tidal loads on the fitted parameters of free core nutation. Acta Geodaetica et Cartographica Sinica (in Chinese), 2001, 30(3): 214~219[16] Xu Jian-Qiao, Sun He-Ping. Nearly diurnal resonance measured with a superconducting gravimeter at Wuhan. Progress in Natural Science (in Chinese), 2002, 12(1): 70~73[17] Sato T. Fluid core resonances measured by quartz tube extensometers at the Esashi Earth tide station. In: Kakkuri J, ed.Pro 11th Int Sympos on Earth Tides,Stuttgart, 1991. 573~582[18] Herring T A, Gwinn C R, Shapiro I I. Geodesy by Radio Interferometry: Studies of the Forced Nutations of the earth 1. Data Analysis.J Geophys Res, 1986, 91(B5): 4745~4754[19] Xu Jian-Qiao, Sun He-Ping, Luo Shao-Cong. Study of the Earth's free core nutation by tidal gravity data recorded with international superconducting gravimeters. Science in China(Ser D), 2002,45(4): 337~347[20] Smith M L. The scalar equations of infinitesimal elastic-gravitational motion for a rotating, slightly elliptical earth. Geophys J R astr Soc, 1974, 37: 491~526[21] Smylie D E, Jiang X, Brennan B J, et al.Numerical calculation of modes of oscillation of the Earth's core. Geophys J Int, 1992,108: 465~490[22] Smylie D E, Hinderer J, Richter B, et al. The product spectra of gravity and barometric pressure in Europe. Phys Earth Planet Inter, 1993, 80: 135~157[23] Smith M L.Translational inner core oscillations of for a rotating, slightly elliptical Earth. J Geophys Res, 1976, 81(17): 3055~3064 |