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  • Causes and Consequences of the Columbia River Flood Basalts
  • Crustal Seismic Structure Beneath the Source Area of the Columbia River Flood Basalt: Bifurcation of the Moho Driven by Lithosphere Delamination

 

Crustal Seismic Structure Beneath the Source Area of the Columbia River Flood Basalt: Bifurcation of the Moho Driven by Lithosphere Delamination

Date: 4/26/2019

Time: 04:00 PM

Room: Puget Sound

The source area of the ~16 Ma Columbia River flood basalt eruptions originated beneath the Wallowa Mountains in northeast Oregon, with a distinct circular pattern of topographic uplift. Teleseismic receiver functions reveal two layers between latitude 45.5o and 46.5o beneath north of the Wallowas, one at 25 km depth and the other one at 45 km depth. A new full-wave ambient noise tomography model shows a circular anomaly, which is seismically fast in the upper crust and slow from lower crust to uppermost mantle in comparison with the surroundings, coincident with the circular pattern of the Wallowas. The seismic structures suggest that delamination of the Farallon lithosphere initiated the basalt eruptions and consequently modified the lowermost crust, forming a new shallow Moho. The Farallon slab is probably detached directly beneath the Wallowas, while being maintained at the northern edge of the Wallowas, corresponding to the deeper interface.

 


Presenting Author: Haiying Gao


Authors

Haiying Gao

Presenting Author Corresponding Author

haiyinggao@geo.umass.edu

University of Massachusetts Amherst, Amherst, Massachusetts, United States

Presenting Author
Corresponding Author

Crustal Seismic Structure Beneath the Source Area of the Columbia River Flood Basalt: Bifurcation of the Moho Driven by Lithosphere Delamination

Category

Causes and Consequences of the Columbia River Flood Basalts

Description