HR: 14:25h
AN: T42C-04 [PDF]
TI: Episodic Forearc Uplift Related to Subduction of the Woodlark Basin, Western Solomons Arc: Intermittent
Aseismic Slip or Multi-Century Earthquake Recurrence Intervals?
AU: * Taylor, F W
EM: fred@ig.utexas.edu
AF: Institute for Geophysics, Univ. Texas, 4412 Spicewood Springs Rd., Austin, TX 78759-8500 United States
AU: Frohlich, C
EM: cliff@ig.utexas.edu
AF: Institute for Geophysics, Univ. Texas, 4412 Spicewood Springs Rd., Austin, TX 78759-8500 United States
AU: Mann, P
EM: paulm@ig.utexas.edu
AF: Institute for Geophysics, Univ. Texas, 4412 Spicewood Springs Rd., Austin, TX 78759-8500 United States
AU: Burr, G S
EM: burr@u.arizona.edu
AF: NSF Accelerator Facility, Physics Dept., Univ. Arizona, 1118 E Fourth St., Tucson, AZ 85721 United States
AU: Beck, W
EM: wbeck@physics.arizona.edu
AF: NSF Accelerator Facility, Physics Dept., Univ. Arizona, 1118 E Fourth St., Tucson, AZ 85721 United States
AU: Edwards, R L
EM: edwar001@maroon.tc.umn.edu
AF: Dept. Geology and Geophysics, Univ. Minnesota, 310 Pillsbury Dr. SE, Minneapolis, MN 55455 United States
AU: Phillips, D A
EM: dap@soest.hawaii.edu
AF: SOEST, Univ. Hawaii, 1680 East-West Rd., Honolulu, HI 96822 United States
AB:
Aseismic subduction of very young lithosphere may occur if the downgoing plate is too young and hot to support stick-slip
cycles of interplate elastic strain accumulation and rupture. However, we have found a series of discrete episodic uplift
events of 1-2 m each in the Western Solomons forearc where $\sim$1-2 Ma Woodlark Basin lithosphere is subducting at rates on
the order of 80-100 mm/yr. These uplift events produce average forearc Holocene uplift rates ranging up to 5-8 mm/yr on
southern Rendova and Tetepare Islands about 25 km from the plate boundary in a forearc area lacking historical evidence for
large forearc thrust events.
The best evidence of paleouplifts is in central eastern Rendova where the Holocene uplift rate is $\sim$3 mm/yr. Here we
find morphologically pristine emerged corals at $\sim$2 m elevation that give a cluster of radiocarbon ages (783$\pm$38,
799$\pm$28, 800$\pm$34 yr BP) (calib. age: 279 - 463 yr BP) that match a local solution notch at $\sim$2 m elevation.
Additional distinct notches occur immediately above at $\sim$3.5 and 5 m elevation. Corals at $\sim$3.3 m give ages of
1286$\pm$43 yr BP(calib. age: 663 -787 yr BP) and at $\sim$ 4.75 m the age is 1436$\pm$39 yr BP (calib. age: 762 - 932 yr
BP). Additional notches cut the lower 10 m of emerged Holocene reef that rises to 20 m maximum elevation in this area.
Thus, late Holocene uplift appears to occur by discrete events on the order of 1-2 m that affect a large area of the outer
forearc.
Maximum uplift rates located in a zone only $\sim$25 km from the convergent plate boundary are best explained by subducting
rugged seafloor topography causing full or at least partial locking of the interplate thrust zone from near the sea floor to
$\sim$10-20 km depth on the interplate thrust zone. A recurrence interval of several hundred years between ruptures on a
locked thrust zone could explain why seismicity in this area is depressed. However, if the interplate thrust zone is
aseismic, then perhaps these uplift events are generated by episodic non-seismic interplate slip. Another possibility is
that locking at the shallow end of the interplate thrust zone is sufficient to delay slip at greater depths so that it occurs
episodically rather than continuously.
DE: 7209 Earthquake dynamics and mechanics
DE: 7221 Paleoseismology
DE: 7230 Seismicity and seismotectonics
DE: 8123 Dynamics, seismotectonics
SC: Tectonophysics [T]
MN: 2003 Fall Meeting