T014-01
Seismological evidence for the earliest global subduction network at 2 Ga ago

Tuesday, 8 December 2020: 16:00
Virtual
Bo Wan1, Xusong Yang2, Xiaobo Tian1, Huaiyu Yuan3, Uwe Kirscher4 and Ross N. Mitchell, (1)State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China, (2)Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China, (3)Macquarie University, CCFS, Sydney, NSW, Australia, (4)LMU, Munich, Germany
Abstract:
The earliest evidence for subduction, which could have been localized, does not signify when plate tectonics became a global phenomenon. To test the antiquity of global subduction, we investigated Paleoproterozoic time, for which seismic evidence is available from multiple continents. We used a new high-density seismic array in North China to image the crustal structure that exhibits a dipping and deepening Moho bearing close resemblance to that of the modern Himalaya. The relict collisional zone is Paleoproterozoic in age and implies subduction operating at least as early as ~2 billion years (Ga) ago. Seismic evidence of subduction from six continents at this age is interpreted as the oldest evidence of global plate tectonics. The sutures identified can be linked in a plate network that resulted in the assembly of Nuna, likely Earth’s first supercontinent. Global subduction by ~2 Ga can also explain why secular planetary cooling was not significant until Proterozoic time.