HR: 11:20h
AN: T52B-05 [Abstracts]
TI: Thermal History of an Oceanic Core Complex, Atlantis Bank, Southwest Indian Ridge: Evidence for Hydrothermal Activity 2.6 Myr Off-Axis
AU: * Schwartz, J J
EM: jschwartz@geo.ua.edu
AF: University of Alabama, Department of Geology, Tuscaloosa, AL 35487, United States
AU: John, B E
EM: bjohn@uwyo.edu
AF: University of Wyoming, Department of Geology and Geophysics, Laramie, WY 82071,
United States
AU: Cheadle, M J
EM: cheadle@uwyo.edu
AF: University of Wyoming, Department of Geology and Geophysics, Laramie, WY 82071,
United States
AU: Reiners, P W
EM: reiners@U.Arizona.EDU
AF: University of Arizona, Department of Geosciences, Tucson, AZ 85721, United States
AU: Baines, G
EM: graham.baines@adelaide.edu.au
AF: The University of Adelaide, Centre for Mineral Exploration Under Cover, Adelaide, 5005,
United States
AB:
We report 26 new (U-Th)/He zircon dates from the Atlantis Bank Oceanic Core Complex (OCC), Southwest Indian
Ridge. The low (~200 °C) closure temperature of the (U-Th)/He isotopic system, together with higher
temperature (850 °C) crystallization ages from U-Pb zircon dating, allow us to constrain the timescales and
rates of lower crustal cooling in oceanic crust. Samples from the detachment fault surface exposed at the sea
floor, indicate that the denuded crust cooled rapidly through 200 °C in <1 Myr, yielding mean cooling rates
>1200 °C/Myr, consistent with existing models for cooling of oceanic crust. However, samples collected
along post-detachment, N-S- and E-W-trending fault scarps record (U-Th)/He ages averaging 2.6 Myr younger
than their corresponding igneous crystallization ages. These ages are inconsistent with steady-state conductive
cooling models for lower oceanic crust and cannot be explained by simple monotonic cooling. Instead, they
record cooling through 200 °C when the crust was well outside the rift valley, ~36 km off-axis assuming
a half spreading rate of 14km/Myr. These samples display extensive post-crystallization greenschist-facies
alteration and contain metamorphic mineral assemblages of chlorite + actinolite ± hornblende ±
epidote ± serpentine ± clay, consistent with hydrothermal alteration. Therefore, we suggest that these
anomalously young (U-Th)/He zircon ages record localized thermal heating events associated with high-
temperature (>300 °C) hydrothermal fluid flow along transform-parallel and transform-normal faults that
were active outside the rift valley during transtension along the bounding Atlantis II transform fault. A significant
component of the heat driving hydrothermal fluid flow may have been derived from underplated mafic magmas
emplaced during transtension. The young (U-Th)/He ages therefore delimit zones of hydrothermal upflow, and
record evidence of protracted hydrothermal circulation up to ~3 Myr off-axis at the Atlantis Bank OCC.
DE: 1708 Geochronology
DE: 3035 Midocean ridge processes
DE: 8045 Role of fluids
DE: 8135 Hydrothermal systems (0450, 1034, 3017, 3616, 4832, 8424)
SC: Tectonophysics [T]
MN: 2007 Fall Meeting