HR: 17:05h
AN: GP24A-04 INVITED [Abstracts]
TI: New Geophysical L Study Northwestern Antarctic Peninsula: Geodinamic Implicances
AU: * Vilas, J F
EM: fincovilas@yahoo.com.ar
AF: CONICET-INGEODAV. Dpto. Ciencias Geologicas. Universidad de Buenos Aires, Ciudad
Universitaria. Pabellon 2. Entrepiso, Buenos Aires, 1428, Argentina
AU: Tassone, A A
EM: atassone@gl.fcen.uba.ar
AF: CONICET-INGEODAV. Dpto. Ciencias Geologicas. Universidad de Buenos Aires, Ciudad
Universitaria. Pabellon 2. Entrepiso, Buenos Aires, 1428, Argentina
AU: Lippai, H F
EM: lippai@gl.fcen.uba.ar
AF: CONICET-INGEODAV. Dpto. Ciencias Geologicas. Universidad de Buenos Aires, Ciudad
Universitaria. Pabellon 2. Entrepiso, Buenos Aires, 1428, Argentina
AB:
The current tectonic arrangement of Tierra del Fuego and Antarctica is the product of an extensive and complex
evolution that involved the most southern part in South America (SA) from the Early Mesozoic when a subduction
area settles down along the Pacific border of Gondwana (GDW) including the then continuous SA and Antarctic
Peninsula (AP) (Dalziel and Elliot, 1973; Dalziel, 1982). The paleogeographic position of the AP immediately
before the separation of the GDW has been a topic of controversy. The presently available information for the
beginning of GDW fragmentation is contradictory. In the last years a new accretion model has been proposed for
the Mesozoic development of the AP. This model requires of more data to sustain the extension of the old
magmatic arc and GDW paleomargin. A geophysical campaign has been developed along Danco Coast -
between Py Point to the south, and Vivot Cape to the north- with the aim of acquire new data to define the
geometry, lateral relationships and tectonic development of the geologic units of the Mesozoic magmatic arc
exposed in the western border of the AP. Rock outcrops mostly belong to plutonic bodies of granitic through
tonalitic composition, and rhyolites, andesites and basaltic rocks. The geologic survey included the lithologic and
structural sampling, a total of 216 rock cores were obtained for AMS and paleomagnetic studies. The acquired
data have been GPS referred. The magnetic survey was carried out with two magnetometers of proton free-
precession: a Scintrex ENVI GRAD (used as permanent base) and a Geometrics G856 magnetometer employed
for sampling stations (which measured the intensity of the total magnetic field and worked synchronized with the
base magnetometer in order to make the corresponding corrections). A total of 1670 registrations were acquired
in the 334 GPS fixed onland stations. A Zodiac MK5 was employed for the offshore magnetic survey. 5162
stations constitute the magnetic grid in offshore areas, organized along orthogonal sections with a total length of
around 380 km. The magnetic anomaly map produced with the acquired data shows five N-S-oriented belts of
maximums up to 3000 nT separated by minimum of -500nT. The preliminary interpretation of the data might allow
to infer the offshore prolongation of volcanic levels such as those observed in onland areas. Results of the
magnetic survey along with the paleomagnetic and petrologic information presently in process will provide new
insights of the western border of AP and its geodynamic relation with other segments of the old GDW margin.
DE: 1500 GEOMAGNETISM AND PALEOMAGNETISM
DE: 1517 Magnetic anomalies: modeling and interpretation
DE: 1518 Magnetic fabrics and anisotropy
DE: 1519 Magnetic mineralogy and petrology
DE: 1525 Paleomagnetism applied to tectonics: regional, global
SC: Geomagnetism and Paleomagnetism [GP]
MN: 2007 Joint Assembly