HR: 0830h
AN: T41C-0225 [PDF]
TI: Hunting for Ocean Island Moho: The Snipe Bites Back.
AU: * Leahy, G M
EM: garrett.leahy@yale.edu
AF: Yale University, Dept of Geology and Geophysics
PO Box 208109, New Haven, CT 06520-8109 United States
AB:
Previous studies of oceanic crust in the Pacific using seismic refraction
have modeled average properties of the plate, neglecting regions of abnormal
topography (White et al. 1992). Subsequent refraction studies (eg. Mutter
and Mutter, 1993) have shown that, though the average thickness of the
Pacific crust follows White et al.'s 7.1 km, it ranges in thickness
from 2-37 km in anomalous regions. We investigate crustal structure
underneath Rarotonga (Cook Islands), Tahiti (Society Islands), and
Christmas Island using multi-taper correlation (MTC) receiver function (RF)
methods in conjunction with data from Global Seismic Network (GSN) stations
(RAR, PPT, XMAS respectively). 415 teleseismic
P coda comprise our data set,
of which 166 were recorded at RAR, 182 at PPT, and 67 at
XMAS. Robust receiver functions to 2.5 Hz are computed at each station, at a
broad distribution of back-azimuths and epicentral distances.
We find that the crust and upper mantle under these islands are
significantly more complex than a simple oceanic lithosphere model
predicts, and that this structure is very similar from one island to the
next. We observe Ps conversions arriving at less than 0.5-s delay
that we attribute to conversions from the base of the volcano. We also see
three conversions arriving at roughly 1, 2, and 3 seconds delay. Several
mechanisms could explain our results, including crustal underplating,
partial serpentinization of the upper mantle, topographic scattering, and
partial-melt phenomena. We also consider the possibility that this
structure is broadly associated with the Pacific superswell,
because the North Pacific stations POHA (Hawai'i Island) and WAKE (Wake
Island) exhibit markedly different receiver functions.
Mutter, C.Z. and J.C. Mutter, Variations in thickness of layer 3 dominate
oceanic crustal structure, Earth Planet. Sci. Lett., v117, 295-317, 1993.
White, R.S., D.P. McKenzie, and R.K. O'Nions, Oceanic crustal thickness
from seismic measurements and rare earth element inversions, J. Geophys.
Res., v97, 19683-19715, 1992.
DE: 3099 General or miscellaneous
DE: 3210 Modeling
DE: 7218 Lithosphere and upper mantle
DE: 7220 Oceanic crust
DE: 8120 Dynamics of lithosphere and mantle--general
SC: Tectonophysics [T]
MN: 2003 Fall Meeting