HR: 0800h
AN: DI31A-0246 [Abstracts]
TI: Geomagnetic Dipole Tilt Changes Induced by Core Flow
AU: * Amit, H
EM: hagay@ipgp.jussieu.fr
AF: Equipe de Geomagnetisme, Institut de Physique du Globe de Paris, 4 Place Jussieu, Paris
Cedex 05, 75252, France
AU: Olson, P
EM: olson@jhu.edu
AF: Department of Earth and Planetary Sciences, Johns Hopkins University, 3400 North
Charles Street, Baltimore, MD 21218, United States
AB:
The tilt of the geomagnetic dipole decreased from about 11.7 degrees in 1960 to 10.5 degrees in 2005, following
more than a century when it remained nearly constant. The recent poleward motion of the dipole axis is primarily
due to a rapid decrease in the equatorial component of the dipole moment vector. Using maps of the equatorial
dipole moment density and its secular change derived from core field models, we identify regions on the core-
mantle boundary where the present-day tilt decrease is concentrated. Among the possible causes of equatorial
dipole moment change on the core-mantle boundary, tangential magnetic diffusion is negligible on these time-
scales, and although radial
magnetic diffusion is potentially significant, the rapid changes in equatorial moment density indicate it is not the
dominant mechanism. We show that magnetic flux transport can account for most of the observed equatorial
dipole moment change. Frozen-flux core flow models derived from geomagnetic secular variation reveal a nearly-
balanced pattern of sources and sinks for the equatorial dipole moment below the core-mantle boundary. The
recent tilt decrease originates from two advective sinks, one beneath Africa where positive radial magnetic field is
transported westward away from the equatorial dipole axis, the other beneath North America where negative
radial magnetic field is transported northward away from the equatorial dipole axis. Each of these sinks is related
to a prominent gyre that has evolved significantly over the past few decades, indicating the large-scale circulation
in the outer core is variable on this time-scale.
DE: 1213 Earth's interior: dynamics (1507, 7207, 7208, 8115, 8120)
DE: 1507 Core processes (1213, 8115)
DE: 1510 Dynamo: theories and simulations
DE: 1560 Time variations: secular and longer
SC: Study of the Earth's Deep Interior [DI]
MN: 2007 Fall Meeting