HR: 11:50h
AN: GP22A-06 [Abstracts]
TI: New Tests of the Fixed Hotspot Approximation
AU: * Gordon, R G
EM: rgg@rice.edu
AF: Rice University, Earth Science, MS 126
6100 Main St., Houston, TX 77005 United States
AU: Andrews, D L
EM: dandrews@jhu.edu
AF: Rice University, Earth Science, MS 126
6100 Main St., Houston, TX 77005 United States
AU: Horner-Johnson, B C
EM: benhj@pdx.edu
AF: Rice University, Earth Science, MS 126
6100 Main St., Houston, TX 77005 United States
AU: Kumar, R R
EM: rkumar@rice.edu
AF: Rice University, Earth Science, MS 126
6100 Main St., Houston, TX 77005 United States
AB:
We present new methods for estimating uncertainties in plate reconstructions relative to the hotspots and new tests of the
fixed hotspot approximation. We find no significant motion between Pacific hotspots, on the one hand, and Indo-Atlantic
hotspots, on the other, for the past ~ 50 Myr, but large and significant apparent motion before 50 Ma.
Whether this motion is truly due to motion between hotspots or alternatively due to flaws in the global plate motion circuit
can be tested with paleomagnetic data.
These tests give results consistent with the fixed hotspot approximation and indicate significant misfits when a relative
plate motion circuit through Antarctica is employed for times before 50 Ma.
If all of the misfit to the global plate motion circuit is due to motion between East and West Antarctica, then that motion
is 800 ± 500 km near the Ross Sea Embayment and progressively less along the Trans-Antarctic Mountains toward the Weddell Sea.
Further paleomagnetic tests of the fixed hotspot approximation can be made. Cenozoic and Cretaceous paleomagnetic data from
the Pacific plate, along with reconstructions of the Pacific plate relative to the hotspots, can be used to estimate an
apparent polar wander (APW) path of Pacific hotspots. An APW path of Indo-Atlantic hotspots can be similarly estimated (e.g. Besse & Courtillot 2002). If both paths diverge in similar ways from the north pole of the hotspot reference frame, it
would indicate that the hotspots have moved in unison relative to the spin axis, which may be attributed to true polar
wander. If the two paths diverge from one another, motion between Pacific hotspots and Indo-Atlantic hotspots would be
indicated. The general agreement of the two paths shows that the former is more important than the latter. The data require little or no motion between groups of hotspots, but up to ~10 mm/yr of motion is allowed within uncertainties.
The results disagree, in particular, with the recent extreme interpretation of Tarduno et al. [2003], who assume (1) that
motion of the Indo-Atlantic hotspots relative to the spin axis can be ignored during the past 85 Myr, and (2) that the
Hawaiian hotspot has been fixed relative to the spin axis since the age of the Hawaiian-Emperor bend. Our results indicate
that both assumptions are false.
DE: 1525 Paleomagnetism applied to tectonics (regional, global)
DE: 3040 Plate tectonics (8150, 8155, 8157, 8158)
DE: 8157 Plate motions--past (3040)
DE: 8450 Planetary volcanism (5480)
SC: Geomagnetism and Paleomagnetism [GP]
MN: 2005 Joint Assembly