HR: 09:20h
AN: T21E-06 INVITED [Abstracts]
TI: Oceanic Remnants In The Caribbean Plate: Origin And Loss Of Related LIPs.
AU: * Giunta, G
EM: giuntape@unipa.it
AF: Dipartimento Geologia, Universit… di Palermo, Corso Tukory, 131, Palermo, 90134
Italy
AB:
The modern Caribbean Plate is an independent lithospheric entity, occupying more than 4 Mkm2 and consisting of the remnants
of little deformed Cretaceous oceanic plateau of the Colombia and Venezuela Basins (almost 1 Mkm2) and the
Palaeozoic-Mesozoic Chortis continental block (about 700,000 km2), both bounded by deformed marginal belts. The northern
(Guatemala and Greater Antilles) and the southern (northern Venezuela) plate margins are marked by collisional zones, whereas
the western (Central America Isthmus) and the eastern (Lesser Antilles) margins are represented by convergent boundaries and
their magmatic arcs, all involving ophiolitic terranes. The evolutionary history of the Caribbean Plate since the
Jurassic-Early Cretaceous encompasses plume, accretionary, and collisional tectonics, the evidence of which has been recorded
in the oceanic remnants of lost LIPs, as revealed in: i) the MORB to OIB thickened crust of the oceanic plateau, including
its un-deformed or little deformed main portion, and scattered deformed tectonic units; ii) ophiolitic tectonic units of MORB
affinity and the rock blocks in ophiolitic melanges; iii) intra-oceanic, supra subduction magmatic sequences with IAT and CA
affinities. The Mesozoic oceanic LIPs, from which the remnants of the Caribbean Plate have been derived, have been poorly
preserved during various episodes of the intra-oceanic convergence, either those related to the original proto-Caribbean
oceanic realm or those connected with two eo-Caribbean stages of subduction. The trapped oceanic plateau of the Colombia and
Venezuela Basins is likely to be an unknown portion of a bigger crustal element of a LIP, similar to the Ontong-Java
plateau. The Jurassic-Early Cretaceous proto-Caribbean oceanic domain consists of oceanic crust generated at multiple
spreading centres; during the Cretaceous, part of this crust was thickened to form an oceanic plateau with MORB and OIB
affinities. At the same time, both South and North American continental margins, inferred to be close to the oceanic realm,
were affected by rifting and within-plate tholeiitic magmatism (WPT); this interpretation supports a near mid-America
original location of the "proto-Caribbean" LIP. The MORB magmatic sections and rock blocks in the ophiolitic melanges are
interpreted as exhumed tectonic sheets of the normal proto-Caribbean oceanic lithosphere, or part of a back-arc crust, both
deformed in the eo-Caribbean stages. The SSZ complexes, considered as Cordilleran-type deformed ophiolites, were derived from
a LIP that experienced two superimposed eo-Caribbean stages of intra-oceanic subduction. The older (Mid-Cretaceous) stage
involved the eastward subduction of the un-thickened proto-Caribbean lithosphere, resulting in IAT and CA magmatism
accompanied by HP-LT metamorphism and melange formation. The second, Late Cretaceous stage involved a westward dipping
intra-oceanic subduction, which generated tonalitic arc magmatism. The eastward wedging of the Caribbean Plateau between the
North and South American plates progressively trapped remnants of the Colombia and Venezuela Basins between the Atlantic and
Pacific subduction zones and their new volcanic arcs (Aves-Lesser Antilles and Central American Isthmus). Unlike the
proto-Caribbean, it appears that this LIP did not involve the main continental margins, even though the northern and southern
Caribbean borders experienced different evolutionary paths. It was largely lost by superimposed accretionary and collisional
events producing the marginal belts of the Caribbean Plate; its evolution has been dominated by a strongly oblique tectonic
regime, constraining seafloor spreading, subduction, crustal exhumation, emplacement, and dismembering processes.
DE: 8120 Dynamics of lithosphere and mantle: general (1213)
DE: 8137 Hotspots, large igneous provinces, and flood basalt volcanism
DE: 8140 Ophiolites (3042)
DE: 8178 Tectonics and magmatism
DE: 8416 Mid-oceanic ridge processes (1032, 3614)
SC: Tectonophysics [T]
MN: Fall Meeting 2005