Vertical depletion of ophiolitic mantle reflects melt focusing and interaction in sub-spreading-center asthenosphere

Qing Xiong*, Hong-Kun Dai, Jian-Ping Zheng*, William L. Griffin, Hong-Da Zheng, Li Wang, Suzanne Y. O’Reilly

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

15 Citations (Scopus)
76 Downloads (Pure)

Abstract

Decompressional melting of asthenosphere under spreading centers has been accepted to produce oceanic lithospheric mantle with vertical compositional variations, but these gradients are much smaller than those observed from ophiolites, which clearly require additional causes. Here we conduct high-density sampling and whole-rock and mineral analyses of peridotites across a Tibetan ophiolitic mantle section (~2 km thick), which shows a primary upward depletion (~12% difference) and local more-depleted anomalies. Thermodynamic modeling demonstrates that these features cannot be produced by decompressional melting or proportional compression of residual mantle, but can be explained by melt-peridotite reaction with lateral melt/rock ratio variations in an upwelling asthenospheric column, producing stronger depletion in the melt-focusing center and local zones. This column splits symmetrically and flows to become the horizontal uppermost lithospheric mantle, characterized by upward depletion and local anomalies. This model provides insights into melt extraction and uppermost-mantle origin beneath spreading centers with high melt fluxes.

Original languageEnglish
Article number6956
Pages (from-to)1-11
Number of pages11
JournalNature Communications
Volume13
Issue number1
DOIs
Publication statusPublished - 14 Nov 2022

Bibliographical note

Copyright the Author(s) 2022. Version archived for private and non-commercial use with the permission of the author/s and according to publisher conditions. For further rights please contact the publisher.

Fingerprint

Dive into the research topics of 'Vertical depletion of ophiolitic mantle reflects melt focusing and interaction in sub-spreading-center asthenosphere'. Together they form a unique fingerprint.

Cite this