HR: 0830h
AN: V31E-0977 [PDF]
TI: The 780 Gunbarrel Magmatic Event: U-Pb Documentation of Widespread Mafic Magmatism Along the
Neoproterozoic Western of Laurentia
AU: * Harlan, S S
EM: sharlan@gmu.edu
AF: Dept of Environental Science and Policy, George Mason University, Fairfax, VA 22030
AU: Heaman, L
EM: lheaman@ualberta.ca
AF: Dept of Earth and Atmospheric Sciences, University of Alberta, Edmonton, AB T6G 2E3
Canada
AU: LeCheminant, A N
EM: Tony_LeCheminant@rogers.com
AF: Geological Survey of Canada, 601 Booth Street, Ottawa, ON K1A 0E8
Canada
AU: Premo, W R
EM: wpremo@usgs.gov
AF: U.S. Geological Survey, Federal Center, Denver, CO 80225
AB:
Precise U-Pb baddeleyite dating of mafic igneous rocks provide evidence for a widespread and synchronous magmatic event that
extended for $>$2400 km along the western margin of the Neoproterozoic Laurentian craton. The gabbros dated in this study
include three mafic sheets that intrude crystalline basement rocks of the Northwest Territories (the Gunbarrel, Calder and
Faber Lake gabbros), a mafic sill exposed in the Mackenzie Mountains (Concajou Canyon sill), a mafic dike in the Muskwa
Ranges of British Columbia (Muncho Lake diabase), and three northwest-trending mafic dikes in the Tobacco Root (group B
dikes) and Beartooth Mountains (Christmas Lake dike) of Montana and Wyoming. U-Pb baddeleyite analyses for eight intrusions
from seven localities yield $^{207}$Pb/$^{206}$Pb ages that range from 775 to 782 Ma, with most analyses less than 2%
discordant. The $^{207}$Pb/$^{206}$Pb dates from the eight mafic dikes and sheets are statistically indistinguishable and we
have combined sixteen individual baddeleyite analyses to yield a composite U-Pb Concordia age of 780.3 $\pm$ 1.4 Ma (95%
confidence level). We term this 780 Ma event the Gunbarrel magmatic event based on exposures of the Gunbarrel gabbro found
along Gunbarrel Inlet, Great Bear Lake, Northwest Territories. Other mafic rocks that may be part of the gunbarrel event
include some of the voluminous mafic sills that intrude the Belt/Purcell Supergroups in the U.S. and Canada and the
northwest-trending dike at Mount Moran in the Teton Mountains of Wyoming. Overall, this is the geographically largest mafic
event yet identified along the Neoprotoerozoic western margin of Laurentia. The origin of the mafic magmatism of the
Gunbarrel event is not clear, but it may be related to mantle plume activity or the upwelling of asthenosphere leading to
crustal extension accompanying initial breakup of the supercontinent Rodinia and development of the proto-Pacific Ocean. The
mafic magmatism of the Gunbarrel magmatic event at 780 Ma predates the voluminous magmatism of the 723 Ma Franklin igneous
event of the northwestern Canadian Shield by about 60 m.y. The precise dating of the extensive Neoproterozoic Gunbarrel and
Franklin magmatic events, combined with paleomagnetic data, provide unique time-markers and piercing points that can
ultimately be used for robust testing of Neoproterozoic continental reconstructions.
DE: 1035 Geochronology
DE: 3640 Igneous petrology
DE: 8125 Evolution of the Earth
DE: 9619 Precambrian
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2003 Fall Meeting