HR: 1330h
AN: T42B-0288 [PDF]
TI: Geochemical and Geochronologic Constraints on the Tectonic Evolution of Southeastern Tibet
AU: * Booth, A L
EM: mbooth@pangea.stanford.edu
AF: Stanford University, Dept. of Geological & Environ. Sci., Stanford, CA 94305
AU: Zeitler, P K
EM: peter.zeitler@lehigh.edu
AF: Lehigh University, 31 Williams Dr, Bethlehem, PA 18015-3188
AU: Kidd, W S
EM: wkidd@atmos.albany.edu
AF: 31 Williams Dr, ES 315, Albany, NY 12222-0001
AU: Wooden, J L
EM: jwooden@usgs.gov
AF: U.S. Geol Survey, 345 Middlefield Road, Menlo Park, CA 94025
AU: Idleman, B
EM: bdi2@lehigh.edu
AF: Lehigh University, 31 Williams Dr, Bethlehem, PA 18015-3188
AU: Yuping, L
EM: cdlyuping@cgs.gov.cn
AF: Chengdu Institute of Mines and Geology, 82 Beisanduan, Chengdu, 610082
China
AU: Chamberlain, C P
EM: chamb@pangea.stanford.edu
AF: Stanford University, Dept. of Geological & Environ. Sci., Stanford, CA 94305
AB:
The eastern syntaxis of the Himalayas is expressed in the crust as a rotation of topographic, structural, and lithologic
features from dominantly east-west to approximately north-south trends. The axis of rotation of geologic features is
coincidental with the high topography of the Namche Barwa region, the exposure of granulite-grade metamorphic rocks, and a
major bend in the Tsangpo River. Within the Namche Barwa and subjacent terranes are numerous granitoids that are associated
with various events contributing to the tectonic development of southeastern Tibet. Our combined geochronologic and
geochemical investigation of these granitoids provides insight into mechanisms of granite formation and helps to constrain
the distribution of terranes, timing of assembly, and magmatic processes operative in each. U-Pb SHRIMP ages establish a
complex tectonic history for southeastern Tibet, with the presence of at least five magmatic episodes: $\sim$250 Ma,
$\sim$120 Ma, 40-70 Ma, 18-25 Ma, and 3-10 Ma. Two lines of evidence suggest that the Namche Barwa massif is a product of
local feedbacks between tectonic and surficial processes: 1) exceptionally young zircon ages (~2.8--9.5 Ma) for samples
collected from the Tsangpo river gorge correspond to a period of rapid denudation; 2) granitoid geochemistry within the
massif core reveals high Rb/Sr ratios ($>$1.4), suggesting a fluid-absent (decompression) melting regime dominates near the
core of Namche Barwa.
UR: http://www.ees.lehigh.edu/groups/corners/corners.html
DE: 8110 Continental tectonics--general (0905)
SC: Tectonophysics [T]
MN: 2003 Fall Meeting