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
Full text not available from this repository. (Request a copy)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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