HR: 0800h
AN: T41A-0365 [Abstracts]
TI: Residual depth anomalies on the Iberian, Newfoundland, Labrador and Nova Scotian margins; implications for their lithosphere mass and density distribution
AU: * Cooper, C
EM: christopher.cooper@liverpool.ac.uk
AF: University of Liverpool, Department of Earth and Ocean Sciences, Liverpool, L69 3GP,
United Kingdom
AU: Kusznir, N
EM: n.kusznir@liverpool.ac.uk
AF: University of Liverpool, Department of Earth and Ocean Sciences, Liverpool, L69 3GP,
United Kingdom
AU: Manatschal, G
EM: manatschal@illite.u-strasbg.fr
AF: Université Louis Pasteur, CGS-EOST, Strasbourg, F-67084, France
AB:
The break-up of the Iberian and Newfoundland margins has resulted in large scale asymmetry between these
conjugate margins. One documented asymmetry is that the oldest oceanic crust on the Newfoundland margin is
elevated with respect to that of the Iberian margin. This work employs residual depth anomalies (RDA) to
investigate this asymmetry. Observed bathymetry has been compared to the global oceanic bathymetry-age
models of Parsons and Sclater (1977) and Stein and Stein (1992) in order to calculate RDA. The oceanic crust on
the Nova Scotia and Labrador margins have also been included in this study in order to explore the lithosphere
mass and density distribution across the wider region. Seismically derived cross-sections have been flexurally
backstripped to correct the RDA for sediments. A correction has also been made to the RDA for seismically
observed variation in oceanic crustal thickness, about the global mean thickness, using local isostasy. Key
observations of the corrected RDA are: (1) oceanic crust on the Labrador and the Newfoundland margins are over
a kilometre shallower than predicted by the global bathymetry-age models; (2) oceanic crust on the
Newfoundland margin is elevated by 700 to 900m relative to its conjugate Iberian margin; (3) the RDA decrease
oceanwards; (4) the RDA decrease southwards on both sides of the North Atlantic. Potential sources of the
observed RDA have been investigated, including flexural coupling of oceanic and continental lithosphere, mantle
plume uplift, serpentinization, magmatic intrusions and lithospheric mantle geochemical heterogeneity.
Modelling shows flexural coupling of oceanic and continental lithosphere, during thermal subsidence of the
oceanic lithosphere, may be the sole source of the ocean-wards decrease in RDA. However, the elevation of the
Newfoundland margin relative to the Iberian margin can not be explained by flexural isostatic coupling. The
Iceland plume might be the source of the southerly decrease in RDA; however, this is unlikely, due to its large
distance from the margins. Moreover, the Iceland and Azores plumes are unlikely to be the source of the elevation
of the Newfoundland margin relative to the Iberian margin, since the plumes are approximately the same
distance from the margins. A possible explanation for the elevation of the Newfoundland margin relative to the
Iberian margin, is a compositional mass deficiency within the ocean-continent transition (OCT) of the
Newfoundland margin. Possible compositional deficiencies include gabbroic intrusions, serpentinized
lithospheric mantle and lithospheric mantle depletion. The quantities of these compositional deficiencies,
required to generate the observed positive RDA, has been estimated using local isostasy. If all the observed
positive RDA is caused by a compositional mass deficiency then the required thicknesses of gabbroic intrusions,
fully serpentinized mantle or partially serpentinized (50 to 60%) mantle are 4 - 10 km; 2 - 5 km or 3.5 - 9 km
respectively. Partial depletion of the entire lithospheric mantle, within the OCT of the Newfoundland margin is an
alternative explanation for its elevation relative to the Iberian margin. If mantle depletion is the sole source of the
positive RDA of the Galicia Bank (northern Iberia) and Flemish Cap (northern Newfoundland) margins, then the
entire lithospheric mantle within their OCT must be depleted by 11 and 23% respectively. These depletion levels
are consistent with the measured depletions of mantle rocks from the two margins (Muntener and Manatschal,
2006).
DE: 8105 Continental margins: divergent (1212, 8124)
DE: 8138 Lithospheric flexure
SC: Tectonophysics [T]
MN: 2007 Fall Meeting