HR: 0830h
AN: ED41B-1161 [PDF]
TI: A COARSE Receiver Function Survey of the Southern Arizona Lithosphere
AU: * Frassetto, A M
EM: andyf@seis.sc.edu
AF: Department of Geological Sciences, 700 Sumter Street
University of South Carolina, Columbia, SC 29208 United States
AU: Gilbert, H
EM: hgilbert@geo.arizona.edu
AF: Department of Geosciences, The University of Arizona
Gould-Simpson Building 1040 E. Fourth Street, Tucson, AZ 85721-0077 United States
AU: Fouch, M J
EM: fouch@asu.edu
AF: Department of Geological Sciences, Arizona State University, Tempe, AZ 85287 United States
AU: Beck, S L
EM: beck@geo.arizona.edu
AF: Department of Geosciences, The University of Arizona
Gould-Simpson Building 1040 E. Fourth Street, Tucson, AZ 85721-0077 United States
AU: Zandt, G
EM: zandt@geo.arizona.edu
AF: Department of Geosciences, The University of Arizona
Gould-Simpson Building 1040 E. Fourth Street, Tucson, AZ 85721-0077 United States
AU: Owens, T J
EM: owens@seis.sc.edu
AF: Department of Geological Sciences, 700 Sumter Street
University of South Carolina, Columbia, SC 29208 United States
AU: Garnero, E
EM: garnero@asu.edu
AF: Department of Geological Sciences, Arizona State University, Tempe, AZ 85287 United States
AB:
Project COARSE (COnsortium for Arizona Reconnaissance Seismic Experiment) operates a temporary network of broadband seismic
stations in southern Arizona. The goal of the project is to investigate the crustal and deep structure across the transition
from the Southern Basin and Range to the southern Colorado Plateau. Southern Arizona is a region of notable undersampling in
tomographic and receiver function studies of the lithospheric-scale structure of the western United States. In addition,
these data will provide unique first-order constraints on crust and upper mantle structure beneath the region in preparation
for more focused efforts as EarthScope and USarray pass through the region. We are currently operating eight broadband
seismographs recording continuously at 25 samples/sec in an approximate SW-NE swath across southeastern Arizona. When
combined with the two permanent broadband stations in the state (TUC and WUAZ), the array will provide the requisite data to
delineate the first-order structure of the lithosphere and sublithospheric mantle, as well as improve imaging capabilities
for deep Earth structure in adjacent regions.
One key question we are addressing is the nature of extension in the Southern Basin and Range, and how this extension is
accommodated at greater depths. The current study therefore focuses on data collected at stations located at astronomical
observatories on mountain summits associated with metamorphic core complexes. From SW to NE the seismic stations are located
at 1) Kitt Peak (KITT), 2) Mt. Lemmon (LEMN) and the nearby GSN station TUC, and 3) Mt. Graham (SQRL). Analyses of receiver
functions from teleseismic events at each station indicate a gradual SW to NE increase in crustal thickness from 29 km at
KITT, to 30 km at LEMN, and 32 km at SQRL. This crustal thickness increase correlates with the increase in summit elevations
from 2100m at KITT, to 2800m at LEMN, and 3050m at SQRL. Among these stations, only the TUC station has a clear Moho multiple
from which we can estimate the bulk crustal Vp/Vs value of 1.74. The receiver functions from stations KITT and SQRL have
prominent arrivals from the top of a crustal low-velocity zone at depths of 17 km and 14 km, respectively. Inter-crustal
arrivals in this region possibly mark shallowly dipping shear zones that have played a role in accommodating extension during
core complex formation. We hope to characterize how crustal thickness, anisotropy, extension, and shear within the crust are
related in southern Arizona.
DE: 7203 Body wave propagation
DE: 7205 Continental crust (1242)
DE: 7218 Lithosphere and upper mantle
SC: Education and Human Resources [ED]
MN: 2003 Fall Meeting