Rheology of the lower mantle: an alternative review. [PDF]
Cordier P, Van Orman J, Carrez P.
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Formation of calcium silicate perovskite above the core-mantle boundary during solidification of Earth's magma ocean. [PDF]
Wang T +4 more
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Lower-mantle iron heterogeneity constrained by the electrical conductivity of Al-bearing bridgmanite. [PDF]
Han K +8 more
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Periclase deforms more slowly than bridgmanite under mantle conditions. [PDF]
Cordier P +6 more
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Retention of noble gases in the deep Earth: Kinetic trapping or stable bonding? [PDF]
Figowy S, Caracas R, Avice G.
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From magma ocean to core-mantle boundary: the key role of hydrous ferropericlase in shaping deep Earth's low-velocity anomalies. [PDF]
Guan SD, Wang Y, Du ZX, Yang YN, Xu YG.
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Rheological Study of Bridgmanite at the Lower Mantle
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Water exchange process and bulk composition regulate slab dynamics and deep earthquakes. [PDF]
Zhu J, Tao R, Zhang L, Ishii T.
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Sublithospheric diamond constraints on the state of deeply subducted slabs. [PDF]
Zhang Q +11 more
europepmc +1 more source
Sluggish post-garnet transformation controls slab stagnation at the uppermost lower mantle. [PDF]
Shen Y, Yang J, Zhao L.
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