Sublithospheric diamond ages and the supercontinent cycle

dc.contributor.authorTIMMERMAN, Suzette
dc.contributor.authorSTACHEL, Thomas
dc.contributor.authorKOORNNEEF, Janne M.
dc.contributor.authorSMIT, Karen V.
dc.contributor.authorHARLOU, Rikke
dc.contributor.authorNOWELL, Geoff M.
dc.contributor.authorTHOMSON, Andrew R.
dc.contributor.authorKOHN, Simon C.
dc.contributor.authorDAVIES, Joshua H. F. L.
dc.contributor.authorDAVIES, Gareth R.
dc.contributor.authorKREBS, Mandy Y.
dc.contributor.authorZHANG, Qiwei
dc.contributor.authorMILNE, Sarah E. M.
dc.contributor.authorHARRIS, Jeffrey W.
dc.contributor.authorKAMINSKY, Felix
dc.contributor.authorZEDGENIZOV, Dmitry
dc.contributor.authorBULANOVA, Galina
dc.contributor.authorSMITH, Chris B.
dc.contributor.authorCABRAL NETO, Izaac
dc.contributor.authorSILVEIRA, Francisco Valdir
dc.contributor.authorBURNHAM, Antony D.
dc.contributor.authorNESTOLA, Fabrizio
dc.contributor.authorSHIREY, Steven B.
dc.contributor.authorWALTER, Michael J.
dc.contributor.authorSTEELE, Andrew
dc.contributor.authorPEARSON, D. Graham
dc.creator.affilliationUniversity of Albertapt_BR
dc.creator.affilliationVrije Universiteitpt_BR
dc.creator.affilliationUniversity of Witwatersrandpt_BR
dc.creator.affilliationUniversity of Durhampt_BR
dc.creator.affilliationUniversity College Londonpt_BR
dc.creator.affilliationUniversity of Bristolpt_BR
dc.creator.affilliationUniversité du Québec à Montréalpt_BR
dc.creator.affilliationUniversity of Glasgowpt_BR
dc.creator.affilliationRussian Academy of Sciencespt_BR
dc.creator.affilliationAustralian National Universitypt_BR
dc.creator.affilliationUniversity of Paduapt_BR
dc.creator.affilliationCarnegie Institution for Sciencept_BR
dc.creator.affilliationUniversity of Bernpt_BR
dc.date.accessioned2024-01-29T19:08:03Z
dc.date.available2024-01-29T19:08:03Z
dc.date.issued2023
dc.description.abstractSubduction related to the ancient supercontinent cycle is poorly constrained by mantle samples. Sublithospheric diamond crystallization records the release of melts from subducting oceanic lithosphere at 300–700 km depths1,2 and is especially suited to tracking the timing and effects of deep mantle processes on supercontinents. Here we show that four isotope systems (Rb–Sr, Sm–Nd, U–Pb and Re–Os) applied to Fe-sulfide and CaSiO3 inclusions within 13 sublithospheric diamonds from Juína (Brazil) and Kankan (Guinea) give broadly overlapping crystallization ages from around 450 to 650 million years ago. The intracratonic location of the diamond deposits on Gondwana and the ages, initial isotopic ratios, and trace element content of the inclusions indicate formation from a peri-Gondwanan subduction system. Preservation of these Neoproterozoic–Palaeozoic sublithospheric diamonds beneath Gondwana until its Cretaceous breakup, coupled with majorite geobarometry3,4, suggests that they accreted to and were retained in the lithospheric keel for more than 300 Myr during supercontinent migration. We propose that this process of lithosphere growth—with diamonds attached to the supercontinent keel by the diapiric uprise of depleted buoyant material and pieces of slab crust—could have enhanced supercontinent stability.pt_BR
dc.identifier.citationTIMMERMAN, Suzette; STACHEL, Thomas; KOORNNEEF, Janne M.; SMIT, Karen V.; HARLOU, Rikke; NOWELL, Geoff M.; THOMSON, Andrew R.; KOHN, Simon C.; DAVIES, Joshua H. F. L.; DAVIES, Gareth R.; KREBS, Mandy Y.; ZHANG, Qiwei; MILNE, Sarah E. M.; HARRIS, Jeffrey W.; KAMINSKY, Felix; ZEDGENIZOV, Dmitry; BULANOVA, Galina; SMITH, Chris B.; CABRAL NETO, Izaac; SILVEIRA, Francisco Valdir; BURNHAM, Anthony D.; NESTOLA, Fabrizio; SHIREY, Steven B.; WALTER, Michael J.; STEELE, Andrew; PEARSON, D. Graham. Sublithospheric diamond ages and the supercontinent cycle. Nature, [Londres], v. 623, p. 752-756, nov. 2023. DOI: https://doi.org/10.1038/s41586-023-06662-9. Disponível em: https://www.nature.com/articles/s41586-023-06662-9. Acesso em: 26 jan. 2024.pt_BR
dc.identifier.urihttps://rigeo.sgb.gov.br/handle/doc/24688
dc.language.isoeng
dc.local[Londres]
dc.rightsopenpt_BR
dc.subject.enGEOCHEMISTRYpt_BR
dc.subject.enGEODYNAMICSpt_BR
dc.subject.enMINERALOGYpt_BR
dc.subject.enTECTONICSpt_BR
dc.titleSublithospheric diamond ages and the supercontinent cyclept_BR
dc.typeArticlept_BR

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