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DOI10.1130/B31642.1
Geology and Ar-40/Ar-39 geochronology of the middle Miocene McDermitt volcanic field, Oregon and Nevada: Silicic volcanism associated with propagating flood basalt dikes at initiation of the Yellowstone hotspot
Benson, Thomas R.; Mahood, Gail A.; Grove, Marty
2017-09-01
发表期刊GEOLOGICAL SOCIETY OF AMERICA BULLETIN
ISSN0016-7606
EISSN1943-2674
出版年2017
卷号129
文章类型Article
语种英语
国家USA
英文摘要

The middle Miocene McDermitt volcanic field of southeastern Oregon and northern Nevada is a caldera complex that is temporally and spatially associated with the earliest flood lavas of the Columbia River Basalt Group, the Steens Basalt. The topographically prominent caldera west of McDermitt, Nevada, has commonly been considered the starting point for the time-transgressive Yellowstone hotspot trend. In the original work defining the field, seven weakly to moderately peralkaline rhyolitic ignimbrites were identified to have erupted from seven calderas over an interval of similar to 1 m.y. following emplacement of Steens Basalt flood lavas. Aided by 47 new high-precision Ar-40/Ar-39 ages and extensive trace-element geochemistry, we refine the volcanic stratigraphy to four major ignimbrites: 16.468 +/- 0.006 Ma (2 sigma) Tuff of Oregon Canyon, 16.415 +/- 0.007 Ma Tuff of Trout Creek Mountains, 16.328 +/- 0.013 Ma Tuff of Long Ridge, and 15.556 +/- 0.014 Ma Tuff of White-horse Creek. New geologic mapping has identified the sources of the two oldest ignimbrites at two newly delineated, overlapping calderas in the northern McDermitt volcanic field: the similar to 20 x 24 km Fish Creek caldera, formed on eruption of the Tuff of Oregon Canyon, and the similar to 20 x 26 km Pole Canyon caldera, formed similar to 50 k.y. later on eruption of the compositionally similar Tuff of Trout Creek Mountains. Ring-fracture lavas of these two calderas lie outboard of those related to the youngest caldera in the field, the similar to 13 x 12 km Whitehorse caldera, which is entirely nested within the Pole Canyon caldera. The new mapping and chronology of the northern McDermitt volcanic field make clear that there is a linear similar to N20 degrees W trend of mafic, intermediate, and rhyolitic volcanism that extends southwest from the northern McDermitt volcanic field, through McDermitt caldera and the Santa Rosa-Calico center, to the northern Nevada Rift. A similar linear trend is observed similar to 75 km to the west, where the Hawks Valley-Lone Mountain center and the calderas of the High Rock caldera complex define an similar to N20 degrees E trend radiating south-southwest from Steens Mountain. The temporal, spatial, and compositional patterns of rhyolitic magmatism along both trends are consistent with rapid southward propagation of flood basalt dike swarms associated with emplacement of the Yellowstone plume head.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000409330000001
WOS关键词SNAKE RIVER PLAIN ; NORTH-CENTRAL NEVADA ; NORTHWESTERN NEVADA ; SOUTHEASTERN OREGON ; LARGE-VOLUME ; TECTONIC EVOLUTION ; PACIFIC-NORTHWEST ; STRUCTURE BENEATH ; HIGH-TEMPERATURE ; DECAY CONSTANTS
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/25344
专题地球科学
作者单位Stanford Univ, Dept Geol Sci, 450 Serra Mall,Bldg 320, Stanford, CA 94305 USA
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Benson, Thomas R.,Mahood, Gail A.,Grove, Marty. Geology and Ar-40/Ar-39 geochronology of the middle Miocene McDermitt volcanic field, Oregon and Nevada: Silicic volcanism associated with propagating flood basalt dikes at initiation of the Yellowstone hotspot[J]. GEOLOGICAL SOCIETY OF AMERICA BULLETIN,2017,129.
APA Benson, Thomas R.,Mahood, Gail A.,&Grove, Marty.(2017).Geology and Ar-40/Ar-39 geochronology of the middle Miocene McDermitt volcanic field, Oregon and Nevada: Silicic volcanism associated with propagating flood basalt dikes at initiation of the Yellowstone hotspot.GEOLOGICAL SOCIETY OF AMERICA BULLETIN,129.
MLA Benson, Thomas R.,et al."Geology and Ar-40/Ar-39 geochronology of the middle Miocene McDermitt volcanic field, Oregon and Nevada: Silicic volcanism associated with propagating flood basalt dikes at initiation of the Yellowstone hotspot".GEOLOGICAL SOCIETY OF AMERICA BULLETIN 129(2017).
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