Thin crust as evidence for depleted mantle supporting the Marion Rise
Huaiyang Zhou () and
Henry J. B. Dick ()
Additional contact information
Huaiyang Zhou: State Key Laboratory of Marine Geology, Tongji University
Henry J. B. Dick: Woods Hole Oceanographic Institution
Nature, 2013, vol. 494, issue 7436, 195-200
Abstract:
Abstract The global ridge system is dominated by oceanic rises reflecting large variations in axial depth associated with mantle hotspots. The little-studied Marion Rise is as large as the Icelandic Rise, considering both length and depth, but has an axial rift (rather than a high) nearly its entire length. Uniquely along the Southwest Indian Ridge systematic sampling allows direct examination of crustal architecture over its full length. Here we show that, unlike the Icelandic Rise, peridotites are extensively exposed high on the rise, revealing that the crust is generally thin, and often missing, over a rifted rise. Therefore the Marion Rise must be largely an isostatic response to ancient melting events that created low-density depleted mantle beneath the Southwest Indian Ridge rather than thickened crust or a large thermal anomaly. The origin of this depleted mantle is probably the mantle emplaced into the African asthenosphere during the Karoo and Madagascar flood basalt events.
Date: 2013
References: Add references at CitEc
Citations:
Downloads: (external link)
https://www.nature.com/articles/nature11842 Abstract (text/html)
Access to the full text of the articles in this series is restricted.
Related works:
This item may be available elsewhere in EconPapers: Search for items with the same title.
Export reference: BibTeX
RIS (EndNote, ProCite, RefMan)
HTML/Text
Persistent link: https://EconPapers.repec.org/RePEc:nat:nature:v:494:y:2013:i:7436:d:10.1038_nature11842
Ordering information: This journal article can be ordered from
https://www.nature.com/
DOI: 10.1038/nature11842
Access Statistics for this article
Nature is currently edited by Magdalena Skipper
More articles in Nature from Nature
Bibliographic data for series maintained by Sonal Shukla () and Springer Nature Abstracting and Indexing ().