HR: 0800h
AN: P21B-0141 [Abstracts]
TI: Late Crustal Growth on Mars: Evidence From Lithospheric Extension
AU: * Grott, M
EM: matthias.grott@dlr.de
AF: Institute of Planetary Research, German Aerospace Center (DLR), Rutherfordstrasse 2, Berlin, 12589
Germany
AB:
Rift valleys on Mars have attracted considerable attention in the
last couple of years and recently
been observed with the High Resolution Stereo Camera (HRSC)
on board the Mars Express mission. The images provided by the HRSC
cover very large areas (up to 105 km2) with
high spatial resolution and are an ideal data base
for age determinations based on crater statistics.
It was thus possible to constrain the time of rifting at the
Coracis Fossae in the Thaumasia region to 3.5-3.9 Gyr, the spatial
resolution of the images being ~20 m per pixel.
Continental extension on Earth proceeds in either narrow rifting, wide rifting
or core complex mode, depending on the ambient initial conditions.
The type of lithospheric extension at the Coracis Fossae is narrow
rifting, the region subject to intense normal faulting narrower than
150 km. We have applied the pure shear model of lithospheric extension
to determine the range of initial conditions such as
thermal gradient and crustal thickness that allow for narrow rifts
to form. Using the constraints posed on the thermal gradient by
the flexure of the rift flank, we have determined the crustal thickness
at the Coracis Fossae at 3.5-3.9 Gyr. We find that for the given thermal
gradient of 27-33 K km-1 the crustal thickness cannot have
exceeded 40 km. This is considerably lower than present day
estimates of the crustal thickness in that region and
interpreted as an indication
for continued crustal production at that time.
DE: 5475 Tectonics (8149)
DE: 6225 Mars
DE: 8038 Regional crustal structure
DE: 8109 Continental tectonics: extensional (0905)
DE: 8149 Planetary tectonics (5475)
SC: Planetary Sciences [P]
MN: Fall Meeting 2005