Arc magma formation through the fluid-fluxed mélange melting in subduction zones
Wei Zhang1, Yi-Xiang Chen2, Rex N Taylor3
1State Key Laboratory of Lithospheric and Environmental Coevolution, School of Earth and Space Sciences, University of Science and Technology of China, Hefei, China.
Abstract:
The transport of subducted slab materials to the overlying mantle plays a crucial role in arc magma formation. However, the contributions of aqueous fluids, hydrous melts, or mélange to the convective mantle remain controversial due to the lack of definitive fingerprints for these materials. Here, we report the Ba isotope composition of lavas from a typical cold-slab arc, the Izu arc, to resolve the recycled materials in the source of arc magmas. δ138/134Ba of the arc lavas show an across-arc decrease corresponding to increasing depth and positively correlates with both 87Sr/86Sr and 143Nd/144Nd. Across-arc variations of both δ138/134Ba and Ba/Th ratios support that high Ba/Th in the Izu and other arc magmas originated from slab-derived fluids rather than melts. Quantitative mixing modeling, involving contributions from mélange followed by slab-derived fluids in successive stages, provides a coherent explanation for Ba-Sr-Nd isotopic signatures observed in lavas from cold arcs. Our work reveals the combined role of slab-derived fluids and mélange diapir melting in arc magma formation.
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