Emily
Editor, Senior Moderator
http://www.nature.com/ngeo/journal/v6/n11/full/ngeo1949.html
Hotspot track map here:
http://www.nature.com/ngeo/journal/v6/n11/fig_tab/ngeo1949_F3.html
Hidden hotspot track beneath the eastern United States
Risheng Chu1, 3
Wei Leng2, 3
Don V. Helmberger3
Michael Gurnis3
Nature Geoscience 6, 963?966 (2013)
doi:10.1038/ngeo1949
Received
24 June 2013
Accepted
14 August 2013
Published online
15 September 2013
Hotspot tracks are thought to be the surface expressions of tectonic plates moving over upwelling mantle plumes, and are characterized by volcanic activity that is age progressive1. At present, most hotspot tracks are observed on oceanic or thin continental lithosphere. For old, thick continental lithosphere, such as the eastern United States, hotspot tracks are mainly inferred from sporadic diamondiferous kimberlites putatively sourced from the deep mantle2, 3. Here we use seismic waveforms initiated by the 2011 Mw 5.6 Virginia earthquake, recorded by the seismic observation network USArray, to analyse the structure of the continental lithosphere in the eastern United States. We identify an unexpected linear seismic anomaly in the lower lithosphere that has both a reduced P-wave velocity and high attenuation, and which we interpret as a hotspot track. The anomaly extends eastwards, from Missouri to Virginia, cross-cutting the New Madrid rift system, and then bends northwards. It has no clear relationship with the surface geology, but crosses a 75-million-year-old kimberlite in Kentucky. We use geodynamical modelling to show that an upwelling thermal mantle plume that interacts with the base of continental lithosphere can produce the observed seismic anomaly. We suggest that the hotspot track could be responsible for late Mesozoic reactivation of the New Madrid rift system and seismicity of the eastern United States.
Hotspot track map here:
http://www.nature.com/ngeo/journal/v6/n11/fig_tab/ngeo1949_F3.html