Deep crustal structure across a young passive margin from wide-angle and reflection seismic data (The SARDINIA Experiment) – I. Gulf of Lion’s margin

Author:

Moulin Maryline1,Klingelhoefer Frauke1,Afilhado Alexandra23,Aslanian Daniel1,Schnurle Philippe1,Nouzé Hervé1,Rabineau Marina4,Beslier Marie-Odile5,Feld Aurélie1

Affiliation:

1. Ifremer, Department of Marine Geosciences, BP 70, Plouzané, France

2. IDL – Instituto Dom Luis, Lisboa, Faculdade das Ciências da Universidade de Lisboa, 1749-016 Lisboa, Portugal.

3. ISEL – Instituto Superior de Engenharia de Lisboa, Lisboa, Portugal

4. IUEM, Domaines Océaniques, CNRS, 29280 Plouzané, France

5. Geosciences Azur, BP 48, Villefranche-sur-mer, 06235, France

Abstract

Abstract The conjugate margins system of the Gulf of Lion and West Sardinia (GLWS) represents a unique natural laboratory for addressing fundamental questions about rifting due to its landlocked situation, its youth, its thick sedimentary layers, including prominent palaeo-marker such as the MSC event, and the amount of available data and multidisciplinary studies. The main goals of the SARDINIA experiment, were to (i) investigate the deep structure of the entire system within the two conjugate margins: the Gulf of Lion and West Sardinia, (ii) characterize the nature of the crust, and (iii) define the geometry of the basin and provide important constrains on its genesis. This paper presents the results of P-wave velocity modelling on three coincident near-vertical reflection multi-channel seismic (MCS) and wide-angle seismic profiles acquired in the Gulf of Lion, to a depth of 35 km. A companion paper [part II – Afilhado et al., 2015] addresses the results of two other SARDINIA profiles located on the oriental conjugate West Sardinian margin. Forward wide-angle modelling of both data sets confirms that the margin is characterised by three distinct domains following the onshore unthinned, 33 km-thick continental crust domain: Domain I is bounded by two necking zones, where the crust thins respectively from ~30 to 20 and from 20 to 7 km over a width of about 170 km; the outermost necking is imprinted by the well-known T-reflector at its crustal base; Domain II is characterised by a 7 km-thick crust with « anomalous » velocities ranging from 6 to 7.5 km/s; it represents the transition between the thinned continental crust (Domain I) and a very thin (only 4–5 km) “atypical” oceanic crust (Domain III). In Domain II, the hypothesis of the presence of exhumed mantle is falsified by our results: this domain may likely consist of a thin exhumed lower continental crust overlying a heterogeneous, intruded lower layer. Moreover, despite the difference in their magnetic signatures, Domains II and III present the very similar seismic velocities profiles, and we discuss the possibility of a connection between these two different domains.

Publisher

EDP Sciences

Subject

Geology

Reference135 articles.

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2. Deep crustal structure across an young passive margin from wide-angle and reflection seismic data (The SARDINIA experiment) – II: Sardinia’s margin;Afilhado,2015

3. Aloïsi J.-C. (1986). – Sur un modèle de sédimentation deltaïque: contribution à la connaissance des marges passives. – Thèse de Doctorat d’Etat, Université de Perpignan, 162 pp.

4. Paleogeographic consequences of conservational models in the South Atlantic ocean;Aslanian;Conjugate divergent margins,2012

5. Brazilian and African passive margins of the Central Segment of the South Atlantic Ocean: kinematic constraints;Aslanian;Tectonophysics,2009

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