HR: 1340h
AN: T13C-0489 [Abstracts]
TI: Coupled Basin Evolution and Late-Stage Metamorphic Core Complex Exhumation in the Southern Basin and
Range Province, Southeastern Arizona
AU: * Wagner, F H
EM: fwagner@geo.arizona.edu
AF: Department of Geosciences, University of Arizona, 1040 E 4th Street, Tucson, AZ 85721
United States
AU: Johnson, R A
EM: johnson@geo.arizona.edu
AF: Department of Geosciences, University of Arizona, 1040 E 4th Street, Tucson, AZ 85721
United States
AB:
Records of lithospheric extension and mountain-range uplift are most continuously contained within syntectonic sedimentary
rocks in basins adjacent to large structural culminations. In southeastern Arizona, metamorphic core complexes form mountain
ranges with the highest elevations in the region and supposedly much less extended terranes lie at lower elevations.
Adjacent to the Santa Catalina-Rincon metamorphic core complex, within the Tucson Basin, stratigraphic-sequence geometries
evident in a large suite of 2-D seismic reflection data suggest a two-phase basin-evolution model controlled by the
emplacement and subsequent uplift of the core complex. In its earliest stage, Phase I of basin formation was characterized
by extensive faults forming relatively small-scale proto-basins, which coalesced with the larger basin-bounding detachment
fault system. Synextensional sedimentation within the enlarging basin is evidenced by sediment-growth packages, derived from
adjacent footwall material, fanning into brittle hanging-wall faults. During this phase, volcanism was widespread, and
growth packages contain interbedded sediments and volcanic products but, importantly, no mylonitic clasts from the adjacent
metamorphic core complex. Phase II of basin evolution began after a significant tectonic hiatus and consisted of a symmetric
deepening of the central basin with the introduction of mylonitic clasts in the basin fill. This phase of deformation is
coupled with the activation of a series of high-angle normal faults ringing the mountain range. These observations suggest a
two-phase model for metamorphic core-complex evolution, with an initial stage of isostatic core-complex emplacement into the
upper crust during detachment faulting that resulted in little topographic expression. Core-complex emplacement was
followed, after a significant tectonic hiatus, by late-stage exhumation and flexural uplift of the Santa Catalina-Rincon
metamorphic core complex through younger high-angle faulting. Moreover, the geometry of upper basin-fill units suggests an
extremely low effective elastic thickness in the region and that flexural uplift of the core complex induced asymmetric
transfer of ductile mid-crustal rocks from beneath the subsiding Tucson Basin to the uplifting mountain range.
DE: 7205 Continental crust (1219)
DE: 8015 Local crustal structure
DE: 8109 Continental tectonics: extensional (0905)
DE: 8118 Dynamics and mechanics of faulting (8004)
DE: 8169 Sedimentary basin processes
SC: Tectonophysics [T]
MN: Fall Meeting 2005