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Novel Shock Microstructures in Accessory Minerals from the Haughton Dome, Devon Island, Nunavut, CanadaThe 23 km-diameter, ca. 24 Ma Haughton Dome impact structure in the Canadian Arctic on Devon Island, Nunavut (89deg41′W, 75deg22′N) occurred within a two layered target composed of a shallowly-dipping ~1700 m thick succession of Paleozoic limestones and evaporates overlying ca.1.9 Ga high grade gneisses [1, 2]. Within the structure a well preserved impact melt bearing breccia unit contains a variety of shocked clasts from the pre-impact sediments and basement gneisses [3]. Due to their high level of preservation a variety of studies have been undertaken on the clast population of the melt bearing breccia, including characterization of shock within the accessory minerals of the basement lithologies [4, 5]. This study presents high resolution electron backscatter diffraction (EBSD) microstructural data for zircon and monazite from historic samples of the basement gneiss, in which bulk shock pressures have been previously constrained based on major phases [4, 6]. Shocked zircon and monazite grains have been investigated from shock stage 1b (sample 72110), 2 (7273) and 3 (7192, Dig-9) [4, 6]. At lower shock levels zircon displays planar microstructures consistent with mechanical shock {112} twin formation [7] and deviatoric transformation to the high pressure polymorph reidite [8]. Zircon grains from shock stage three show a more chaotic microstructure with multiple orientations of tightly spaced sets of reidite that are variably recrystallized to zircon neoblasts. Monazite from lower shock stages contains a number of mechanical twin orientations that are indicative of shock deformation [9]. At higher shock pressures a lath like structure of interlocking twin orientations has been identified. This microstructure is suggestive of a reversion transformation from a high pressure polymorph [10] and is the first evidence for the transformation of monazite during shock.
Document ID
20180007738
Acquisition Source
Johnson Space Center
Document Type
Abstract
Authors
Erickson, Timmons M.
(Jacobs Technology, Inc. Houston, TX, United States)
de Laeter Cintre, John
(Curtin University Perth, Australia)
Date Acquired
November 14, 2018
Publication Date
November 4, 2018
Subject Category
Space Sciences (General)
Report/Patent Number
JSC-E-DAA-TN60816
Report Number: JSC-E-DAA-TN60816
Meeting Information
Meeting: Annual Meeting Geological Society of America
Location: Indianapolis, IN
Country: United States
Start Date: November 4, 2018
End Date: November 7, 2018
Sponsors: Geological Society of America
Funding Number(s)
CONTRACT_GRANT: NNJ13HA01C
Distribution Limits
Public
Copyright
Public Use Permitted.
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