HR: 0800h
AN: T31B-0464 [Abstracts]
TI: Testing the Presence of Fluids/Crustal Melts in the India-Asia Collision Zone Using Rayleigh Wave Dispersion Analysis
AU: * Caldwell, W B
EM: warrenc@stanford.edu
AF: Stanford University, Dept. of Geophysics
397 Panama Mall, Palo Alto, CA 94303, United States
AU: Klemperer, S L
AF: Stanford University, Dept. of Geophysics
397 Panama Mall, Palo Alto, CA 94303, United States
AU: Rai, S S
AF: National Geophysical Research Institute, Uppal Road, Hyderabad, 500007, India
AB:
A network of 15 broadband seismographs in an approximately 500 km long, N-S array recorded 12 months of
data in 2002-2003 (Rai, S S, et al., Configuration of the Indian Moho beneath the NW Himalaya and Ladakh, GRL
33). The array traverses the NW Himalaya, from the Indian plain in the south, across the Indus-Tsangpo suture
and the Tso Morari Dome, to the southern flank of the Karakoram in the north. Magnetotelluric (MT) studies in this
region reveal low-resistivity zones which may be indicative of fluids, graphite, or partial melts in the mid-crust. We
test this hypothesis by creating 1-D models of crustal velocity structure, which should contain low-velocity zones if
partial melts or fluids are present. Our models are obtained by inverting group and phase velocity dispersion
curves of fundamental mode Rayleigh waves in the period range of roughly 8 to 30 s. Numerous magnitude 4
events, several magnitude 5 events, and one magnitude 6 event occurred 900 km or less from the array. Current
results reveal, as expected, demonstrably different crustal structure in the Indian shield and collisional zone, and
preliminary results suggest that a low-velocity zone is present in the collisional zone.
DE: 7205 Continental crust (1219)
DE: 7255 Surface waves and free oscillations
DE: 8108 Continental tectonics: compressional
SC: Tectonophysics [T]
MN: 2007 Fall Meeting