The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin?

The study of mantle-melt interactions at magma-poor rifted margins, accounting for about half of the world margins, is so far limited by the access to samples. Present concepts are therefore mainly based on studies of the Western Tethys and southern North Atlantic domain, and it remains unclear if t...

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Published in:Earth and Planetary Science Letters
Main Authors: Ballay, Mélanie, Ulrich, Marc, Manatschal, Gianreto
Format: Article in Journal/Newspaper
Language:English
Published: Elsevier BV 2025
Subjects:
Online Access:https://archimer.ifremer.fr/doc/00933/104526/116709.pdf
https://archimer.ifremer.fr/doc/00933/104526/116710.pdf
https://archimer.ifremer.fr/doc/00933/104526/116711.pdf
https://archimer.ifremer.fr/doc/00933/104526/116712.xlsx
https://archimer.ifremer.fr/doc/00933/104526/116713.docx
https://archimer.ifremer.fr/doc/00933/104526/116714.xlsx
https://doi.org/10.1016/j.epsl.2025.119212
https://archimer.ifremer.fr/doc/00933/104526/
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author Ballay, Mélanie
Ulrich, Marc
Manatschal, Gianreto
author_facet Ballay, Mélanie
Ulrich, Marc
Manatschal, Gianreto
author_sort Ballay, Mélanie
collection Archimer (Archive Institutionnelle de l'Ifremer - Institut français de recherche pour l'exploitation de la mer)
container_start_page 119212
container_title Earth and Planetary Science Letters
container_volume 653
description The study of mantle-melt interactions at magma-poor rifted margins, accounting for about half of the world margins, is so far limited by the access to samples. Present concepts are therefore mainly based on studies of the Western Tethys and southern North Atlantic domain, and it remains unclear if they are applicable to other magma-poor rifted margins. Here, we present a study of well-preserved peridotites dredged along the southwestern Australian margin (Diamantina Zone). Our petrological data show that two types of peridotites occur: spinel lherzolite, which represents the inherited subcontinental mantle (SCLM) before the separation of Australia and Antarctica, and plagioclase peridotite formed by syn-rift melt entrapment at low pressure in the plagioclase stability field during mantle exhumation. The observed mantle types as well as the mantle-melt processes identified in the Diamantina peridotites are very similar to those documented in the Alpine-Apennine and Iberia margins. Hence, the Alpine/Iberia model of magma-poor rifted margins may be globally applicable and does not depend on the SCLM inheritance. Remnants of mantle inheritance may be preserved in the refertilized mantle, suggesting a progressive transition from an inherited to a refertilized mantle during breakup. Finally, this study highlights the role of inheritance and refertilization as the main features controlling final rifting and breakup at magma-poor rifted margins.
format Article in Journal/Newspaper
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op_doi https://doi.org/10.1016/j.epsl.2025.119212
op_relation https://archimer.ifremer.fr/doc/00933/104526/116709.pdf
https://archimer.ifremer.fr/doc/00933/104526/116710.pdf
https://archimer.ifremer.fr/doc/00933/104526/116711.pdf
https://archimer.ifremer.fr/doc/00933/104526/116712.xlsx
https://archimer.ifremer.fr/doc/00933/104526/116713.docx
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doi:10.1016/j.epsl.2025.119212
https://archimer.ifremer.fr/doc/00933/104526/
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op_source Earth and Planetary Science Letters (0012-821X) (Elsevier BV), 2025-03 , Vol. 653 , P. 119212 (15p.)
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spelling ftarchimer:oai:archimer.ifremer.fr:104526 2025-04-06T14:39:01+00:00 The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin? Ballay, Mélanie Ulrich, Marc Manatschal, Gianreto 2025-03 application/pdf https://archimer.ifremer.fr/doc/00933/104526/116709.pdf https://archimer.ifremer.fr/doc/00933/104526/116710.pdf https://archimer.ifremer.fr/doc/00933/104526/116711.pdf https://archimer.ifremer.fr/doc/00933/104526/116712.xlsx https://archimer.ifremer.fr/doc/00933/104526/116713.docx https://archimer.ifremer.fr/doc/00933/104526/116714.xlsx https://doi.org/10.1016/j.epsl.2025.119212 https://archimer.ifremer.fr/doc/00933/104526/ eng eng Elsevier BV https://archimer.ifremer.fr/doc/00933/104526/116709.pdf https://archimer.ifremer.fr/doc/00933/104526/116710.pdf https://archimer.ifremer.fr/doc/00933/104526/116711.pdf https://archimer.ifremer.fr/doc/00933/104526/116712.xlsx https://archimer.ifremer.fr/doc/00933/104526/116713.docx https://archimer.ifremer.fr/doc/00933/104526/116714.xlsx doi:10.1016/j.epsl.2025.119212 https://archimer.ifremer.fr/doc/00933/104526/ info:eu-repo/semantics/openAccess restricted use Earth and Planetary Science Letters (0012-821X) (Elsevier BV), 2025-03 , Vol. 653 , P. 119212 (15p.) Magma-poor rifted margin Refertilization antle-melt interaction Magmatic processes modeling text Article info:eu-repo/semantics/article 2025 ftarchimer https://doi.org/10.1016/j.epsl.2025.119212 2025-03-13T05:23:13Z The study of mantle-melt interactions at magma-poor rifted margins, accounting for about half of the world margins, is so far limited by the access to samples. Present concepts are therefore mainly based on studies of the Western Tethys and southern North Atlantic domain, and it remains unclear if they are applicable to other magma-poor rifted margins. Here, we present a study of well-preserved peridotites dredged along the southwestern Australian margin (Diamantina Zone). Our petrological data show that two types of peridotites occur: spinel lherzolite, which represents the inherited subcontinental mantle (SCLM) before the separation of Australia and Antarctica, and plagioclase peridotite formed by syn-rift melt entrapment at low pressure in the plagioclase stability field during mantle exhumation. The observed mantle types as well as the mantle-melt processes identified in the Diamantina peridotites are very similar to those documented in the Alpine-Apennine and Iberia margins. Hence, the Alpine/Iberia model of magma-poor rifted margins may be globally applicable and does not depend on the SCLM inheritance. Remnants of mantle inheritance may be preserved in the refertilized mantle, suggesting a progressive transition from an inherited to a refertilized mantle during breakup. Finally, this study highlights the role of inheritance and refertilization as the main features controlling final rifting and breakup at magma-poor rifted margins. Article in Journal/Newspaper Antarc* Antarctica North Atlantic Archimer (Archive Institutionnelle de l'Ifremer - Institut français de recherche pour l'exploitation de la mer) Earth and Planetary Science Letters 653 119212
spellingShingle Magma-poor rifted margin
Refertilization
antle-melt interaction
Magmatic processes modeling
Ballay, Mélanie
Ulrich, Marc
Manatschal, Gianreto
The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin?
title The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin?
title_full The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin?
title_fullStr The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin?
title_full_unstemmed The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin?
title_short The role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: What can we learn from the SW-Australia margin?
title_sort role of mantle inheritance and refertilization during breakup at magma-poor rifted margins: what can we learn from the sw-australia margin?
topic Magma-poor rifted margin
Refertilization
antle-melt interaction
Magmatic processes modeling
topic_facet Magma-poor rifted margin
Refertilization
antle-melt interaction
Magmatic processes modeling
url https://archimer.ifremer.fr/doc/00933/104526/116709.pdf
https://archimer.ifremer.fr/doc/00933/104526/116710.pdf
https://archimer.ifremer.fr/doc/00933/104526/116711.pdf
https://archimer.ifremer.fr/doc/00933/104526/116712.xlsx
https://archimer.ifremer.fr/doc/00933/104526/116713.docx
https://archimer.ifremer.fr/doc/00933/104526/116714.xlsx
https://doi.org/10.1016/j.epsl.2025.119212
https://archimer.ifremer.fr/doc/00933/104526/