Geomagnetic constraints on stratification at the top of Earth’s core
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[1] J. Bloxham. Simple models of fluid flow at the core surface derived from geomagnetic field models , 1989 .
[2] J. Love. A critique of frozen-flux inverse modelling of a nearly steady geodynamo , 1999 .
[3] Mioara Mandea,et al. Small-scale structure of the geodynamo inferred from Oersted and Magsat satellite data , 2002, Nature.
[4] Edward Crisp Bullard,et al. Kinematics of geomagnetic secular variation in a perfectly conducting core , 1968, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[5] David Gubbins,et al. A formalism for the inversion of geomagnetic data for core motions with diffusion , 1996 .
[6] J. L. Le Mouël,et al. Motions at core surface in the geostrophic approximation , 1985 .
[7] J. Mouël. Outer-core geostrophic flow and secular variation of Earth's geomagnetic field , 1984, Nature.
[8] David Gubbins,et al. A difficulty with using the Frozen Flux Hypothesis to find steady core motions , 1996 .
[9] C. Voorhies. Steady flows at the top of Earth's core derived from geomagnetic field models , 1986 .
[10] D. W. Allan,et al. The secular variation of the earth's magnetic field , 1966, Mathematical Proceedings of the Cambridge Philosophical Society.
[11] F. Nogueira,et al. Nonuniqueness of inverted core‐mantle boundary flows and deviations from tangential geostrophy , 2004 .
[12] George Helffrich,et al. Seismological Constraints on Core Composition from Fe-O-S Liquid Immiscibility , 2004, Science.
[13] Paul H. Roberts,et al. On Analysis of the Secular Variation , 1965 .
[14] K. Whaler. GEOMAGNETIC EVIDENCE FOR FLUID UPWELLING AT THE CORE-MANTLE BOUNDARY , 1986 .
[15] T. Madden,et al. The recent secular variation and the motions at the core surface , 1982, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[16] C. Young,et al. The stably‐stratified outermost core revisited , 1990 .
[17] D. Gubbins,et al. Toroidal fluid motion at the top of the Earth's core , 1990 .
[18] G. Masters,et al. On the resolution of density within the Earth , 2003 .
[19] Richard Holme,et al. A time{dependent model of the Earth’s magnetic fleld and its secular variation for the period 1980 to 2000 , 2006 .
[20] J. Bloxham,et al. Mapping the fluid flow and shear near the core surface using the radial and horizontal components of the magnetic field , 1991 .
[21] C. Gire,et al. Tangentially geostrophic flow at the core-mantle boundary compatible with the observed geomagnetic secular variation: the large-scale component of the flow , 1990 .
[22] T. Madden,et al. Motions of the core surface derived by SV data , 1986 .
[23] K. Whaler,et al. Does the whole of the Earth's core convect? , 1980, Nature.
[24] D. Loper,et al. Compositional convection and stratification of Earth's core , 1981, Nature.
[25] David W. Eaton,et al. Improving seismic resolution of outermost core structure by multichannel analysis and deconvolution of broadband SmKS phases , 2006 .
[26] J. Bloxham. On the consequences of strong stable stratification at the top of Earth's outer core , 1990 .
[27] George E. Backus,et al. Bayesian inference in geomagnetism , 1988 .
[28] D. L. Anderson,et al. Preliminary reference earth model , 1981 .
[29] Jeremy Bloxham,et al. The expulsion of magnetic flux from the Earth's core , 1986 .