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Retroarc Volcanism as Evidence of Changing Subduction Zone Dynamics: New Insights into the Late Cenozoic Magmatic Evolution of the Southern Central Andes (34°S–38°S)

Greco, Carina Liliana et al · Oxford University Press · 2025

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The late Cenozoic retroarc volcanism in the Southern Central Andes (34°S-38°S) exhibits pronounced geochemical variations, which provide critical insights into subduction-related mantle processes and magmatic systems. This volcanism is divided into three stages: an early Neogene stage (24-17 Ma), characterized by alkaline and transitional alkaline-subalkaline mafic magmas; a late Neogene stage (17-4 Ma), exhibiting andesitic arc-related magmas; and a Quaternary stage (4-1 Ma), comprising intraplate mafic magmas. This study presents new geochemical and geochronological data, along with petrogenetic modeling for the early Neogene stage, represented by the La Matancilla, Filo Morado, and Huantraico volcanic sequences. Combined with an extensive geochemical compilation, these data support a comprehensive tectono-magmatic model for the late Cenozoic retroarc volcanism. The La Matancilla and Filo Morado lavas are alkaline basalts derived from low-degree (1-5%) partial melting of an enriched, OIB-like, garnet-bearing mantle source without subduction signatures. Contrarily, the Huantraico lavas range from basalts to trachydacites with transitional alkaline-subalkaline compositions, reflecting a progressive shift from low-degree (< 5%) partial melting of a deep garnet-bearing mantle source to shallower spinel-garnet-bearing mantle, influenced by subduction-related components. Based on geochemical signatures and regional tectonic reconstructions, we propose that the La Matancilla and Filo Morado lavas originated from subduction-driven asthenospheric upwelling and enhanced mantle convection promoted by the Nazca plate rollback during the late Oligocene. Subsequently, the Huantraico lavas record deep dehydration processes as the Nazca slab reached the lower boundary of the mantle transition zone during the early Miocene. This process generated a hydrous plume that ascended and triggered partial melting at shallower depths, imparting weak arc-like signatures. This model underscores the role of retroarc magmatism as a tracer of mantle dynamics during the evolution of the Southern Central Andes. Fil: Greco, Carina Liliana. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina. Secretaria de Industria y Minería. Servicio Geológico Minero Argentino. Instituto de Geología y Recursos Minerales; Argentina. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Departamento de Ciencias Geológicas; Argentina Fil: Iannelli, Sofía. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Ciudad Universitaria. Instituto de Estudios Andinos "Don Pablo Groeber". Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Instituto de Estudios Andinos "Don Pablo Groeber"; Argentina

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APA 7

Greco, C. L. E. A. (2025). Retroarc Volcanism as Evidence of Changing Subduction Zone Dynamics: New Insights into the Late Cenozoic Magmatic Evolution of the Southern Central Andes (34°S–38°S). http://hdl.handle.net/11336/276735

MLA

Greco, Carina Liliana et al. "Retroarc Volcanism as Evidence of Changing Subduction Zone Dynamics: New Insights into the Late Cenozoic Magmatic Evolution of the Southern Central Andes (34°S–38°S)." 2025. http://hdl.handle.net/11336/276735.

Chicago

Greco, Carina Liliana et al. 2025. "Retroarc Volcanism as Evidence of Changing Subduction Zone Dynamics: New Insights into the Late Cenozoic Magmatic Evolution of the Southern Central Andes (34°S–38°S).". http://hdl.handle.net/11336/276735.

Harvard

Greco, C. L. E. A. 2025, Retroarc Volcanism as Evidence of Changing Subduction Zone Dynamics: New Insights into the Late Cenozoic Magmatic Evolution of the Southern Central Andes (34°S–38°S), Oxford University Press, available at: http://hdl.handle.net/11336/276735 [Accessed 10 Aug. 2026].

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Title
Retroarc Volcanism as Evidence of Changing Subduction Zone Dynamics: New Insights into the Late Cenozoic Magmatic Evolution of the Southern Central Andes (34°S–38°S)
Author / contributors
Greco, Carina Liliana et al
Publisher
Oxford University Press
Publication year
2025
ISSN
0022-3530
ISSN
0022-3530
Language
English

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