International audienceWe use numerical dynamos to investigate the possible role of magnetic diffusion at the top of the core. We find that the contribution of radial magnetic diffusion to the secular variation is correlated with that of tangential magnetic diffusion for a wide range of control parameters. The correlation between the two diffusive terms is interpreted in terms of the variation in the strength of poloidal flow along a columnar flow tube. The amplitude ratio of the two diffusive terms is used to estimate the probable contribution of radial magnetic diffusion to the secular variation at Earth-like conditions. We then apply a model where radial magnetic diffusion is proportional to tangential diffusion to core flow inversions of...
International audienceThe tilt of the geomagnetic dipole decreased from about 11.7◦ in 1960 to 10.5◦...
International audienceWe test the ability of large scale velocity fields inferred from geomagnetic s...
International audienceWe present core flows constructed from high resolution secular variation (SV) ...
Changes in the magnetic field generated within Earth's core that occur over years to centuries are k...
International audienceWe invert for motions at the surface of Earth's core under spatial and tempora...
Earth’s internal magnetic field is generated through motion of the electrically conductive iron-allo...
Fluid flow below the core-mantle boundary is inferred from geomagnetic secular variation data, assum...
Secular variation (SV) of Earth’s internal magnetic field is the sum of two contributions, one resul...
Earth’s internal magnetic field is generated through motion of the electrically conductive iron-allo...
International audienceSatellite-data allows the magnetic field produced by the dynamo within the Ear...
International audienceWe derive a model for the steady fluid flow at the top of Earth's core driven ...
International audienceThe frozen flux assumption consists in neglecting magnetic diffusion in the co...
International audienceThis paper introduces inverse geodynamo modelling, a framework imaging flow th...
International audienceSeismic waves sampling the top 100km of the Earth's inner core reveal that the...
International audienceThe frozen flux assumption consists in neglecting magnetic diffusion in the co...
International audienceThe tilt of the geomagnetic dipole decreased from about 11.7◦ in 1960 to 10.5◦...
International audienceWe test the ability of large scale velocity fields inferred from geomagnetic s...
International audienceWe present core flows constructed from high resolution secular variation (SV) ...
Changes in the magnetic field generated within Earth's core that occur over years to centuries are k...
International audienceWe invert for motions at the surface of Earth's core under spatial and tempora...
Earth’s internal magnetic field is generated through motion of the electrically conductive iron-allo...
Fluid flow below the core-mantle boundary is inferred from geomagnetic secular variation data, assum...
Secular variation (SV) of Earth’s internal magnetic field is the sum of two contributions, one resul...
Earth’s internal magnetic field is generated through motion of the electrically conductive iron-allo...
International audienceSatellite-data allows the magnetic field produced by the dynamo within the Ear...
International audienceWe derive a model for the steady fluid flow at the top of Earth's core driven ...
International audienceThe frozen flux assumption consists in neglecting magnetic diffusion in the co...
International audienceThis paper introduces inverse geodynamo modelling, a framework imaging flow th...
International audienceSeismic waves sampling the top 100km of the Earth's inner core reveal that the...
International audienceThe frozen flux assumption consists in neglecting magnetic diffusion in the co...
International audienceThe tilt of the geomagnetic dipole decreased from about 11.7◦ in 1960 to 10.5◦...
International audienceWe test the ability of large scale velocity fields inferred from geomagnetic s...
International audienceWe present core flows constructed from high resolution secular variation (SV) ...