Please use this identifier to cite or link to this item: https://cir.cenieh.es/handle/20.500.12136/3099
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dc.contributor.authorWelsh, J.T.-
dc.contributor.authorFeinberg, J.M.-
dc.contributor.authorSchneider, E.-
dc.contributor.authorParés, Josep María-
dc.contributor.authorJicha, B.R.-
dc.contributor.authorSinger, B.S.-
dc.contributor.authorCarroll, A.R.-
dc.date.accessioned2023-11-13T14:43:55Z-
dc.date.issued2023-12-
dc.identifier.citationJournal of Volcanology and Geothermal Research, 2023, 444, 107942es_ES
dc.identifier.issn1872-6097-
dc.identifier.issn0377-0273-
dc.identifier.urihttps://cir.cenieh.es/handle/20.500.12136/3099-
dc.description.abstractThe Leucite Hills Volcanic Field, southwest Wyoming comprises two dozen volcanic features including necks, flows, dikes, and plugs. It has been the focus of many petrologic studies as its volcanic and shallow intrusive rocks are one of the only surficial manifestations of ultrapotassic lamproite. We build on paleomagnetic findings of Sheriff and Shive (1980) by providing further paleomagnetic data from the Boars Tusk dike and Black Rock flows. We also characterize the magnetic mineral assemblage of these lamproites. Principal component analysis of alternating field (AF) and thermal demagnetization data indicate that the dike and breccias of Boars Tusk record a reversed magnetic polarity and the Black Rock lava records a normal polarity, both consistent with previous findings. This recording is typically carried by minerals with coercivities 15 mT and susceptibility measurements indicate magnetite, maghemite, and titanomagnetite as likely magnetic carriers. AF and thermal demagnetization experiments evince secondary magnetizations held by lower coercivity grains, likely caused by lightning strikes. 40Ar/39Ar incremental heating experiments from Boars Tusk and Black Rock give plateau ages of ka and ka, respectively. Recent advances in the chronology of geomagnetic field reversals and excursions during the Quaternary permit integration of the Boars Tusk dike into the lower Matuyama chron, whereas the Black Rock lavas most probably record the Kamikatsura excursion. Notably, Black Rock records high inclinations that suggest the short-lived excursion achieved a full geomagnetic reversal, something not observed at other localities recording the Kamikatsura excursion. The Leucite Hills offer further opportunities to refine the Quaternary geomagnetic instability time scale (GITS), and to improve understanding of the eruptive and geomorphic evolution of this unusual volcanism.es_ES
dc.description.sponsorshipThis is IRM publication 2203. Measurement-level magnetic data associated with Boars Tusk and site-level magnetic data associated with Black Rock can be found on the MagIC Database at (doi:https://doi.org/10.7288/V4/MAGIC/19666). All data can be found in the DRUM Repository at: doi.org/10.13020/929v-p033. Part of this work was performed at the Institute for Rock Magnetism (IRM) at the University of Minnesota. The IRM is a US National Multi-user Facility supported through the Instrumentation and Facilities program of the National Science Foundation, Earth Sciences Division, and by funding from the University of Minnesota. Singer thanks the NSF Geophysics program for supporting the WiscAr lab and a University of Wisconsin-Madison Vilas Professorship that enabled the dating experiments. We thank Dario Bilardello, Maxwell Brown, and Peat Solheid for help with data acquisition, processing, and troubleshooting in the IRM. Bryan Wathen is thanked for his assistance with sample preparation and handling in the WiscAr Laboratory. We thank Ken Kodama and an anonymous reviewer for helpful comments that improved this manuscript, as well as Sonia Calvari for gracefully managing the peer review process. The University of Minnesota is built on the ancestral lands of the Wahpekute band that was ceded to the United States by the Treaty of Traverse des Sioux in July of 1851, in an agreement that was not paid in full. The University has also benefited from Chippewa and Dakota (Mede-wakanton, Wahpekuta, Wahpeton and Sisseton Bands) land ceded by treaty and given to the University of Minnesota via the Morrill Act. Due to its land-grant status, the infrastructure, financial foundations, and faculty, students, and staff at the University of Minnesota all continue to benefit directly from these ceded lands, and we wish to acknowledge this support in our research.es_ES
dc.language.isoenes_ES
dc.publisherElsevieres_ES
dc.rightsinfo:eu-repo/semantics/restrictedAccesses_ES
dc.subjectLamproitees_ES
dc.subjectPaleomagnetismes_ES
dc.subject40Ar/39Ar geochronologyes_ES
dc.subjectKamikatsura geomagnetic excursiones_ES
dc.subjectLeucite Hills Volcanic complexes_ES
dc.titlePaleomagnetism and age of the Leucite Hills Volcanic complex, Wyoming: Implications for eruptive history, landscape evolution, and the geomagnetic instability timescale (GITS)es_ES
dc.typeArticlees_ES
dc.identifier.doi10.1016/j.jvolgeores.2023.107942-
dc.relation.publisherversionhttps://doi.org/10.1016/j.jvolgeores.2023.107942es_ES
dc.date.available2023-11-13T14:43:55Z-
Appears in Collections:Geocronología y Geología



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