HR: 0800h
AN: V51D-1521 [Abstracts]
TI: Reconstructing the Jurassic Talkeetna Intra-oceanic Arc of Alaska Using Thermobarometry
AU: * Hacker, B R
EM: hacker@geol.ucsb.edu
AF: Geology, UC, Santa Barbara, CA 93117
AU: Mehl, L
EM: lmehl@whoi.edu
AF: Geology & Geophysics, WHOI, Woods Hole, MA 02543
AU: Kelemen, P B
EM: peterk@ldeo.columbia.edu
AF: LDEO, Columbia Univ, Palisades, NY 10964
AU: Rioux, M
EM: mrioux@umail.ucsb.edu
AF: Geology, UC, Santa Barbara, CA 93117
AU: Greene, A
EM: agreene@eos.ubc.ca
AF: Earth & Ocean Sciences, UBC, Vancouver, BC V6T 1Z4
AB:
The Talkeetna arc is one of two intra-oceanic arcs where the entire section from the upper mantle tectonite through the
sediments capping the volcanic carapace is well exposed. The objective of this study is to reconstruct the vertical section
of the Talkeetna arc by determining the (re) crystallization pressures at various structural levels. This information is
crucial if the Talkeetna arc is to be exploited as an archetypal cross section for purposes as diverse as understanding the
evolution of the Earth's crust, assessing rates and mechanisms of arc growth, and understanding the tectonic history arcs in
general. The base of the arc crust exposed at Bernard and Scarp Mtns includes rare gabbro(norites) with metamorphic
garnets-mineral assemblages excellent for thermobarometry. Broad core-to-rim garnet zoning toward lower Mg#, pyroxenes with
near-rim, steep increases in Mg# and Al2O3, and unzoned plagioclase document cooling following core
crystallization at ~900- 1025 °C and 0.9-1.0 GPa. Hornblende gabbros with magmatic garnet exposed in the
Klanelneechena klippe indicate significantly lower P-T of ~700-835°C, 0.69- 0.77 GPa. Hornblende gabbro (norites)
that comprise the bulk of the arc were studied in the Tazlina, Barnette, Scarp, and Pippin Ridge sections. Differences in
mineral composition indicate qualitatively that the Tazlina, Barnette, and Scarp sections crystallized at successively
greater depths. Temperature was calculated using hbl- plg [Holland and Blundy, 1994] and cpx-opx [QUILF; Andersen et al.,
1993] net- transfer equilibria, and P was constrained using high δV/δS equilibria among plg, amph, opx, and
cpx. Poorly known amphibole and pyroxene Tschermak-component activity models yield large uncertainties for P, but relative P
differences can be anchored to the better-determined garnet gabbro P's, revealing that the rocks from the Barnette Creek
section crystallized at ~0.40-0.55 GPa and the Tazlina and Pippin sections formed at ~0.25-0.35 GPa. Al-in-hornblende
barometry indicates 0.23 GPa for granodiorites intruding the volcanic section. Calc-silicate rocks within the arc include
metasedimentary wall rocks and carbonate veins cutting igneous rock. Grossular-andradite + diopside + calcite +/- sphene +
quartz +/- wollastonite +/- scapolite mineral assemblages were strongly overprinted by a prehnite-pumpellyite facies
alteration that includes datolite. Calculating P-T for the calc-silicate rocks is tenuous for several reasons-including large
calculated Fe3+ in garnet and cpx, complete replacement of plagioclase, extreme partitioning of Mg into cpx, and
ill-constrained aCO2--but a general correspondence between P-T inferred for the calc-silicate rocks and nearby metamafic
rocks suggests that the calc-silicate assemblages grew during the magmatic development of the arc. Metamorphic rocks in
float of the McHugh Complex(?) structurally beneath the Klanelneechena Klippe contain a strong amphibolite-facies fabric
formed at 500°C and 1.0 ± 0.1 GPa. In summary, the granodiorites intruded at c. 6-10 km into a volcanic section
estimated from stratigraphy to be 7 km thick [Clift et al., 2005]. The shallowest, Tazlina and Pippin, gabbros cooled at
~9-12 km; the Barnette section at ~14-19 km; the Klanelneechena klippe at ~24-26 km; and the base of the arc
at ~30-34 km depth. Thus, the arc consists of a volcanic:plutonic ratio of ~28:72, and the current 5-7 km
structural thickness of the plutonic section of the arc is ~20-35% of the original 20-26 km thickness.
DE: 3612 Reactions and phase equilibria (1012, 8412)
DE: 3651 Thermobarometry
DE: 3660 Metamorphic petrology
DE: 8413 Subduction zone processes (1031, 3060, 3613, 8170)
SC: Volcanology, Geochemistry, Petrology [V]
MN: Fall Meeting 2005