Recycling of depleted continental mantle by subduction and plumes at the Hikurangi Plateau large igneous province, southwestern Pacific Ocean

Author:

Mochizuki K.1,Sutherland R.2,Henrys S.3,Bassett D.3,Van Avendonk H.4,Arai R.5,Kodaira S.5,Fujie G.5,Yamamoto Y.5,Bangs N.4,Barker D.3

Affiliation:

1. Earthquake Research Institute (ERI), University of Tokyo, Tokyo 113-0032, Japan

2. SGEES Victoria University of Wellington, PO Box 600, Wellington 6140, New Zealand

3. GNS Science, PO Box 30368, Lower Hutt 5040, New Zealand

4. Institute for Geophysics, University of Texas at Austin, Austin, Texas 78758-4445, USA

5. Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokohama 236-0001, Japan

Abstract

Abstract Seismic reflection and refraction data from Hikurangi Plateau (southwestern Pacific Ocean) require a crustal thickness of 10 ± 1 km, seismic velocity of 7.25 ± 0.35 km/s at the base of the crust, and mantle velocity of 8.30 ± 0.25 km/s just beneath the Moho. Published models of gravity data that assume normal crust and mantle density predict 5–10-km-thicker crust than we observe, suggesting that the mantle beneath Hikurangi Plateau has anomalously low density, which is inconsistent with previous suggestions of eclogite to explain observations of high seismic velocity. The combination of high seismic velocity and low density requires the mantle to be highly depleted and not serpentinized. We propose that Hikurangi Plateau formed by decompression melting of buoyant mantle that was removed from a craton root by subduction, held beneath 660 km by viscous coupling to slabs, and then rose as a plume from the lower mantle. Ancient Re-Os ages from mantle xenoliths in nearby South Island, New Zealand, support this hypothesis. Erosion of buoyant depleted mantle from craton roots by subduction and then recycling in plumes to make new lithosphere may be an important global geochemical process.

Publisher

Geological Society of America

Subject

Geology

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