HR: 0800h
AN: T41C-1216 [Abstracts]
TI: Birth of a Plate Boundary: Detailed thermochronological constraint of Cenozoic Plate Boundary Evolution
in the South Island of New Zealand
AU: * Batt, G E
EM: g.batt@gl.rhul.ac.uk
AF: University of London, Geology Department
RHUL, Egham, TW20 0EX
United Kingdom
AU: Cottam, M A
EM: m.cottam@gl.rhul.ac.uk
AF: University of London, Geology Department
RHUL, Egham, TW20 0EX
United Kingdom
AU: Baldwin, S L
EM: sbaldwin@syr.edu
AF: Syracuse University, Department of Earth Sciences
Heroy Geology Laboratory
Syracuse University, Syracuse, NY 13244-1070
United States
AB:
Detailed thermochronological investigations of individual samples collected west of the Alpine Fault zone in New Zealand
provide new insight into the spatial distribution of early Australian-Pacific (AUS-PAC) plate boundary evolution that is not
preserved elsewhere in the modern orogenic system of the South Island. Internally consistent cooling histories, derived
through combination of $^{40}$Ar-$^{39}$Ar, fission track and (U-Th)/He analyses of a range of minerals from individual
samples, span the Cenozoic. These records provide direct constraint on the timing and character of three distinct episodes in
the evolution of this tectonic boundary. Of particular note, the early Miocene propagation of the coherent AUS-PAC boundary
through the South Island is expressed as short-lived, episodes of geographically localized cooling, which we infer to be due
to exhumation, beginning at 23-25 Ma. This is consistent with development of this boundary as an initially distributed zone
of deformation, progressively localizing onto discrete fault structures developing primacy of strain accommodation over time.
Further work is in progress to map out the spatial distribution of this activity in greater detail, and thereby constrain
the progressive development of the plate boundary structure. Rapid cooling universally observed from 8 Ma onwards
corroborates the association of the modern obliquely convergent character of the AUS-PAC boundary through the South Island
with a marked change in Pacific Plate motion at that time. Reconciling this regionally synchronous onset with previous
geographically wider-spread studies of the Southern Alps supports recent suggestions that along-strike variation in age
reported for individual thermochronometers results largely from structural inhomogeneity within the orogen, rather than
diachronous tectonic development of the system.
DE: 8102 Continental contractional orogenic belts
DE: 8107 Continental neotectonics
DE: 8158 Plate motions--present and recent (3040)
DE: 1035 Geochronology
SC: Tectonophysics [T]
MN: 2004 AGU Fall Meeting