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Neogene tephra correlations in eastern Idaho and Wyoming; implications for Yellowstone Hotspot-related volcanism and tectonic activity

Mark H. Anders, Janet Saltzman and Sidney R. Hemming
Neogene tephra correlations in eastern Idaho and Wyoming; implications for Yellowstone Hotspot-related volcanism and tectonic activity
Geological Society of America Bulletin (May 2009) 121 (5-6): 837-856

Abstract

The explosive rhyolitic eruptions that define the track of the Snake River Plain-Yellowstone volcanism have produced a large volume of tephra found in late Miocene and younger basin-fill sediments throughout the western United States. Here we use (super 40) Ar/ (super 39) Ar isotopic dating, paleomagnetic analysis, major- and trace-element geochemistry, and standard optical techniques to establish regional tephra correlations. We focus on tephra deposits in three Neogene basins in spatially separated areas--Grand Valley, in eastern Idaho; Jackson Hole, in northwestern Wyoming; and the Granite Mountains area, in central Wyoming. These basins have experienced relatively continuous deposition from the late Miocene to the Holocene. We found tephra layers that directly tie the stratigraphy between all three basins. Using these correlations we found that basins experienced discrete pulses of extension separated by long periods of relative quiescence, the dates of which are staggered between basins. An early pulse of extension occurred in Grand Valley and Jackson Hole between 10.3 Ma and 16.33 Ma with a second pulse initiating between 4.54 Ma and 2.09 Ma. The Granite Mountains basin experienced a single pulse of extension sometime between 11.14 Ma and 6.75 Ma. These pulses of accelerated extension, along with evidence of similar pulses in other basins, present a pattern of west-to-east migration that we suggest is related to the Yellowstone hotspot. The later pulse of activity in Grand Valley and Jackson Hole corresponds to the migration of the North American Plate over the tail of the Yellowstone hotspot. We speculate that the earliest pulse in each basin is related to the more rapid movement of the sublithospheric hotspot head as it spreads out from its earliest known location, where the Columbia River Plateau Flood Basalt Province initiated in southeastern Oregon, to its outermost edge under central Wyoming. Our results are consistent with this model of a plume head, though not unique to it. The results of our study also indicate that previous suggestions that the rate of Snake River Plain explosive volcanism has decreased by a factor of 2 or 3 since emplacement of the middle Miocene Trapper Creek tuffs likely underestimate post-Trapper Creek eruption rates. We have discovered a large number of previously unidentified post-middle Miocene major eruptive events, both as ash-flow tuffs and as vitric air-fall tuffs. Recalculation to include these newly discovered events results in a rate of major eruptions that is fairly uniform until ca. 4.54 Ma. However, there is a substantial gap in major silicic eruptions in the interval between 4.54 Ma and 2.09 Ma, which we call the "post-Heise eruptive gap." With the exception of this gap, the rate of major eruptions on the Snake River Plain has been roughly constant since inception of the eastern Snake River Plain-Yellowstone volcanic track between 16 Ma and 17 Ma.


ISSN: 0016-7606
EISSN: 1943-2674
Coden: BUGMAF
Serial Title: Geological Society of America Bulletin
Serial Volume: 121
Serial Issue: 5-6
Title: Neogene tephra correlations in eastern Idaho and Wyoming; implications for Yellowstone Hotspot-related volcanism and tectonic activity
Affiliation: Lamont-Doherty Earth Observatory, Palisades, NY, United States
Pages: 837-856
Published: 200905
Text Language: English
Publisher: Geological Society of America (GSA), Boulder, CO, United States
References: 101
Accession Number: 2009-048506
Categories: Geochronology
Document Type: Serial
Bibliographic Level: Analytic
Annotation: With GSA Data Repository Item 2009021
Illustration Description: illus. incl. strat. cols., 4 tables, geol. sketch maps
N42°15'00" - N44°15'00", W116°00'00" - W111°30'00"
N43°15'00" - N44°42'00", W111°02'60" - W110°02'60"
N42°25'00" - N43°30'00", W107°37'00" - W106°04'60"
N42°16'60" - N44°01'00", W110°02'60" - W107°30'00"
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2019, American Geosciences Institute. Reference includes data from GeoScienceWorld, Alexandria, VA, United States. Reference includes data supplied by the Geological Society of America, Boulder, CO, United States
Update Code: 200926

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