HR: 1330h
AN: T32B-0932 [PDF]
TI: Thick Upper Mantle Transition Zone beneath Taiwan and the Surrounding Region
AU: * Hung, S
EM: shung@ntu.edu.tw
AF: Dept. of Geosciences, National Taiwan University, Taipei, 106
Taiwan
AU: Lee, X
EM: r91224211@ntu.edu.tw
AF: Dept. of Geosciences, National Taiwan University, Taipei, 106
Taiwan
AU: Shen, Y
EM: yshen@gso.uri.edu
AF: Graduate School of Oceanography, University of Rhode Island, Narragansett, 02882 United States
AB:
The deep mantle structure beneath Taiwan and
the surrounding two subduction systems
remains poorly understood.
In south Taiwan the eastward-subducting
Eurasian plate outlined by the Wadati-Benioff zone
seismicity disappears to the north
of 23$^\circ$N. Because of the lack of
tomographically-imaged velocity structure in deep mantle,
it remains unclear whether an aseismic slab
extends to greater depths or mantle downwelling
occurs as a result of gravitational instability
of the thickening lithosphere beneath the Taiwan orogen.
One approach to address the problem is to map the thickness
of the transition zone from differential times between two P-to-S conversions at the discontinuities near 410 and 660 km
depth. The corresponding seismic velocity jumps have been respectively attributed to the transitions from $\alpha$-phase to
$\beta$-phase of (Mg,Fe)$_2$SiO$_4$ and from $\gamma$-phase to perovskite plus magnesiowustite. Decreasing temperature shoals
and depresses
the boundaries of the phase transformations
near the 410-km and 660-km discontinuities, respectively; thus increases the thickness of the transition zone.
Therefore, variations in the discontinuity depths provide constraints on the thermal state in response to cold slabs or
downwelling mantle. The data used for the study are receiver
functions derived from teleseismic body waves recorded
in the broadband BATS network on Taiwan and off-shore islands. Pds (referring to a P-to-S conversion at the depth $d$) paths
with common piercing points are
binned together in square patches of 260$\times$260 km.
The stacked receiver functions show that P660s-P410s
differential times are greater than in the IASP91 model throughout the entire study area, indicating a relatively thicker and
colder transition zone. The most anomalous region with a 6-s excess differential time is centered
at (22$^\circ$N, 121.8$^\circ$E) near Lanyu island, about 250 km east of the southern end of Taiwan. The delays
of P660s-P410s times decrease toward the north and the west;
only $\sim$1.5-s delay remains beneath north Taiwan and the western Taiwan Strait. Lateral variations in the thickness and
temperature of the transition zone
will be explored after correcting the signature associated with upper mantle heterogeniety.
DE: 3672 Planetary mineralogy and petrology (5410)
DE: 7207 Core and mantle
DE: 8124 Earth's interior--composition and state (old 8105)
DE: 8180 Tomography
SC: Tectonophysics [T]
MN: 2003 Fall Meeting