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Philippine Sea and East Asian plate tectonics since 52 Ma constrained by new subducted slab reconstruction methods

TLDR
The authors reconstructed the Philippine Sea and East Asian plate tectonics from 28 slabs mapped in 3D from global tomography, with a subducted area of ~25% of present-day global oceanic lithosphere.
Abstract
We reconstructed Philippine Sea and East Asian plate tectonics since 52 Ma from 28 slabs mapped in 3-D from global tomography, with a subducted area of ~25% of present-day global oceanic lithosphere Slab constraints include subducted parts of existing Pacific, Indian, and Philippine Sea oceans, plus wholly subducted proto-South China Sea and newly discovered “East Asian Sea” Mapped slabs were unfolded and restored to the Earth surface using three methodologies and input to globally consistent plate reconstructions Important constraints include the following: (1) the Ryukyu slab is ~1000 km N-S, too short to account for ~20° Philippine Sea northward motion from paleolatitudes; (2) the Marianas-Pacific subduction zone was at its present location (±200 km) since 48 ± 10 Ma based on a >1000 km deep slab wall; (3) the 8000 × 2500 km East Asian Sea existed between the Pacific and Indian Oceans at 52 Ma based on lower mantle flat slabs; (4) the Caroline back-arc basin moved with the Pacific, based on the overlapping, coeval Caroline hot spot track These new constraints allow two classes of Philippine Sea plate models, which we compared to paleomagnetic and geologic data Our preferred model involves Philippine Sea nucleation above the Manus plume (0°/150°E) near the Pacific-East Asian Sea plate boundary Large Philippine Sea westward motion and post-40 Ma maximum 80° clockwise rotation accompanied late Eocene-Oligocene collision with the Caroline/Pacific plate The Philippine Sea moved northward post-25 Ma over the northern East Asian Sea, forming a northern Philippine Sea arc that collided with the SW Japan-Ryukyu margin in the Miocene (~20–14 Ma)

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Citations
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Journal ArticleDOI

Slab2, a comprehensive subduction zone geometry model

TL;DR: The three-dimensional geometries of all seismically active global subduction zones are calculated and the resulting model, called Slab2, provides a uniform geometrical analysis of all currently subducting slabs.
Journal ArticleDOI

Atlas of the underworld : Slab remnants in the mantle, their sinking history, and a new outlook on lower mantle viscosity

TL;DR: The Atlas of the Underworld as discussed by the authors is a compilation comprising subduction systems active in the past ~300Myr, assuming no relative horizontal motions between adjacent slabs following break-off, but without assuming a mantle reference frame.
Journal ArticleDOI

Age of the subducting Pacific slab beneath East Asia and its geodynamic implications

TL;DR: In this paper, the age of the subducting Pacific slab beneath East Asia using a high-resolution model of P-wave tomography and paleo-age data of ancient seafloor was studied.
Journal ArticleDOI

Extending full-plate tectonic models into deep time: Linking the Neoproterozoic and the Phanerozoic

TL;DR: For the first time, a continuous full-plate model spanning 1 Ga to the present day was presented in this paper, which includes a revised and improved model for the Neoproterozoic-Cambrian (1000-520 Ma) that connects with models of the Phanerozoic.
Journal ArticleDOI

Tectonic evolution and deep mantle structure of the eastern Tethys since the latest Jurassic

TL;DR: In this paper, a global plate motion model is presented to capture the time-dependent evolution of plates and their tectonic boundaries since 160 Ma, which are assimilated as surface boundary conditions for numerical experiments of mantle convection.
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