Mg-Fe isotopic constraint on the role of the lithosphere mantle in arc magmatism

Yu, Yang and Huang, Xiao‐Long and Yang, Fan and Wang, Yu and Xu, Yi‐Gang and Setiawan, Iwan and Chung, Sun‐Lin and Zhang, Le and Zhu, Guanhong (2025) Mg-Fe isotopic constraint on the role of the lithosphere mantle in arc magmatism. Lithos, 512-51. p. 108166. ISSN 0024-4937, 1872-6143

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Abstract

Arc magmatism is commonly envisaged as generation through a two-endmember petrogenetic process involving the subducted components and asthenospheric mantle wedge. The contribution of sub-arc lithospheric mantle, as a key chemical reservoir in subduction zone, to arc magmas remains poorly constrained. Here we present, for the first time, a systematic dataset of Mgsingle bondFe isotopes on continental arc basalts (CABs) from the Sunda Arc for deciphering the role of sub-arc lithospheric mantle in arc magmatism. The Sunda CABs show significant variations in δ26Mg (−0.28 ‰ to −0.05 ‰) and δ56Fe values (−0.19 ‰ to 0.14 ‰), with mean values of −0.17 ‰ and 0.02 ‰, respectively, resembling those of global arc magmas. These samples mainly display low TiO2/Yb (0.3–0.5) and Fe/Mn (30–60) ratios, indicating their derivation from peridotite melting within the depleted asthenospheric mantle wedge. The weak correlations of Mg and Fe isotopes with εNd suggest that subduction-related metasomatism has not significantly influenced the Mg and Fe isotopic compositions of the asthenospheric mantle wedge. The majority of Sunda CABs exhibit a negative correlation between δ26Mg and Fe/Mn, as well as a positive correlation between δ56Fe and Fe/Mn, both also observed in global arc magmas. These significant variations in Mgsingle bondFe isotopes and Fe/Mn ratios within arc magmas likely result from their intensive interactions with the sub-arc lithospheric mantle through incorporations of the low Fe/Mn (30–50) pyroxenite and high Fe/Mn (50–70) peridotite in different proportions. The interactions may have also elevated the oxygen fugacity as evidenced by the co-variations of Mgsingle bondFe isotopes and V/Sc ratios for the Sunda CABs and global arc basalts. We therefore conclude the crucial role played by the sub-arc lithospheric mantle in global arc magmatism, which has long been overlooked in popular petrogenetic models for subduction zone magmatism.

Item Type: Article
Uncontrolled Keywords: Arc magmatism, Mantle wedge, Lithospheric mantle, Mg-Fe isotopes, Sunda Arc
Subjects: Physics
Natural Resources & Earth Sciences
Divisions: OR_Arkeologi_Bahasa_dan_Sastra > Preservasi_Bahasa_dan_Sastra
Depositing User: Defryan Aprisandani
Date Deposited: 12 Aug 2026 06:34
Last Modified: 13 Aug 2026 07:50
URI: https://karya.brin.go.id/id/eprint/59748

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