HR: 16:00h
AN: S44B-01 [Abstracts]
TI: USArray Receiver Function Images of the Lithosphere in the Western U.S.
AU: * Levander, A
EM: alan@rice.edu
AF: Rice University, Earth Science MS-126
6100 Main Street, Houston, TX 77005, United States
AU: Niu, F
EM: niu@rice.edu
AF: Rice University, Earth Science MS-126
6100 Main Street, Houston, TX 77005, United States
AU: Miller, M S
EM: meghan.s.miller@rice.edu
AF: Rice University, Earth Science MS-126
6100 Main Street, Houston, TX 77005, United States
AU: Zhai, Y
EM: yongbo.zhai@rice.edu
AF: Rice University, Earth Science MS-126
6100 Main Street, Houston, TX 77005, United States
AU: Liu, K
EM: kl4@rice.edu
AF: Rice University, Earth Science MS-126
6100 Main Street, Houston, TX 77005, United States
AB:
We have begun making P- and S-wave receiver functions from the data available from USArray Transportable
Array stations to examine lithospheric and upper mantle structure beneath the western US. At present the
Transportable Array extends as far west as ~108o to 113oW, crossing the Snake River Plain and
Columbia flood basalts, most of the Basin and Range, part of the Rocky Mountains, and about half of the
Colorado Plateau. Our preliminary results are for PdS receiver functions: We constructed a common conversion
point (CCP) stacked volume for the western U.S. using a standard reference velocity model for ray tracing and a
4th root stacking method to enhance lateral correlation. The stack contains ~12,000 receiver functions from
175 earthquakes recorded at 331 stations.
The preliminary PdS stack shows a number of interesting lithospheric features, particularly the lithosphere-
asthenosphere boundary (LAB). We identify the LAB as a negative polarity event at various depths beneath the
Moho, above the zone of contamination from crustal multiples. In northwestern Nevada near (120o to
117o W, 40o to 42o N), the LAB appears to shallow almost to Moho depths (~30 km) in the
region of modern Basin and Range extension. Beneath the rest of the Basin and Range the LAB is at about 60km
depth. These results are in good agreement with SdP receiver functions by Li et al., 2007. To the north beneath
the Snake River plain and Columbia plateau, the LAB is deeper, broader, and centered at about ~75 km
depth. The southernmost Sierra Nevada, Mojave block, and southern Basin and Range have an eastward
thickening lithosphere, with the LAB increasing in depth from ~50km to 70km under the southwestern edge
of the Colorado Plateau. The Sierra Nevada has complications in the lower crust and upper mantle previously
identified by Zandt et al., 2004.
Further work will include incorporating a laterally variable crustal model derived from active source studies to
recalculate the CCP stacks, and comparison of linear and 4th root CCP stacks. Working with other datasets we
have observed that an accurate crustal velocity model can reposition Moho depth by several times the formal
depth error obtained from a general reference model. This is also presumably true for the depth to the LAB.
DE: 7203 Body waves
DE: 7218 Lithosphere (1236)
DE: 8104 Continental margins: convergent
DE: 8110 Continental tectonics: general (0905)
DE: 8111 Continental tectonics: strike-slip and transform
SC: Seismology [S]
MN: 2007 Fall Meeting