HR: 17:15h
AN: T44A-06 [Abstracts]
TI: Flexural uplift of a Lithospheric Slab near the Vema Transform (Central Atlantic): Timing and
Mechanisms
AU: * Ligi, M
EM: marco.ligi@bo.ismar.cnr.it
AF: Istituto di Scienze Marine, Sezione di Geologia Marina, CNR, Via Gobetti, 101, Bologna, Bo 40129
Italy
AU: Bonatti, E
EM: enrico.bonatti@bo.ismar.cnr.it
AF: Istituto di Scienze Marine, Sezione di Geologia Marina, CNR, Via Gobetti, 101, Bologna, Bo 40129
Italy
AU: Bonatti, E
EM: enrico.bonatti@bo.ismar.cnr.it
AF: Department of Earth and Environmental Sciences, Lamont Doherty Earth Observatory, Columbia University,
Rt. 9w Palisades, New York, NY 10964
United States
AU: Brunelli, D
EM: daniele.brunelli@bo.ismar.cnr.it
AF: Istituto di Scienze Marine, Sezione di Geologia Marina, CNR, Via Gobetti, 101, Bologna, Bo 40129
Italy
AU: Brunelli, D
EM: daniele.brunelli@bo.ismar.cnr.it
AF: Laboratoire Pierre Sue CEA-CNRS, Centre de Saclay, Bat. 637, Gif sur Yvette Cedex, F-91191
France
AU: Buck, R W
EM: buck@ldeo.columbia.edu
AF: Department of Earth and Environmental Sciences, Lamont Doherty Earth Observatory, Columbia University,
Rt. 9w Palisades, New York, NY 10964
United States
AU: Cipriani, A
EM: anka@ldeo.columbia.edu
AF: Department of Earth and Environmental Sciences, Lamont Doherty Earth Observatory, Columbia University,
Rt. 9w Palisades, New York, NY 10964
United States
AU: Gasperini, L
EM: luca.gasperini@bo.ismar.cnr.it
AF: Istituto di Scienze Marine, Sezione di Geologia Marina, CNR, Via Gobetti, 101, Bologna, Bo 40129
Italy
AU: Fabretti, P
EM: paola.fabretti@bo.ismar.cnr.it
AF: Istituto di Scienze Marine, Sezione di Geologia Marina, CNR, Via Gobetti, 101, Bologna, Bo 40129
Italy
AU: Ferrante, V
EM: valentina.ferrante@bo.ismar.cnr.it
AF: Istituto di Scienze Marine, Sezione di Geologia Marina, CNR, Via Gobetti, 101, Bologna, Bo 40129
Italy
AB:
The Vema Transverse Ridge (VTR) is a prominent, long and narrow topographic anomaly that runs for over 300 km along a sea
floor spreading flow line south of the Vema transform at 11ø N in the Atlantic. It rises abruptly about 137 km from the axis
of the Mid Atlantic Ridge (MAR) in ~10 My old crust and runs continuously up to ~ 25 My old crust. It reaches over 3 km above
the predicted lithospheric thermal contraction level. It is absent in crust younger than 10 My; thus, the uplift of the VTR
must have ended roughly 10 My. The VTR is interpreted as the exposed edge of a flexured and uplifted slab of oceanic
lithosphere. Multibeam data show that the MAR-parallel seafloor fabric south of the VTR shifts its orientation by 5ø to 10ø
clockwise in ~ 11-12 My old crust, indicating a change at that time of the orientation of the MAR axis and of the position of
the Euler rotation pole. This change caused extension normal to the transform, followed between 12 and 10 My ago by flexure
of the edge of the lithospheric slab, uplift of the VTR at a rate of 2 to 4 mm/yr, and exposure of a lithospheric section
(Vema Lithospheric Section or VLS) at the northern edge of the slab, parallel to the Vema transform. Ages of pelagic
carbonates encrusting ultramafic rocks sampled at the base of the VLS at different distances from the MAR axis suggest that
the entire VTR rose vertically as a single block within the active transform offset. Erosion has gradually removed material
from the top of the VTR and has modified its slopes. A numerical model relates lithospheric flexure to extension normal to
the transform, suggesting that the extent of the uplift depends on the thickness of the brittle layer, consistent with the
observed topography of the VTR. Spreading half rate of the crust south of the transform decreased from 17.2 mm/yr between 26
and 19 My ago to ~16.9 mm/yr between 19 and ~10 My ago, to ~13.6 mm/yr from 10 My ago to present. The slowing down of
spreading occurred close in time to the change in ridge/transform geometry, suggesting that the two events are related. The
events outlined by this study illustrate transform-related vertical tectonics in slow-spreading ridges.
DE: 3040 Plate tectonics (8150, 8155, 8157, 8158)
SC: Tectonophysics [T]
MN: 2004 AGU Fall Meeting