Empirical constraints on progressive shock metamorphism of magnetite from the Siljan impact structure, Sweden

Author:

Holm-Alwmark Sanna123,Erickson Timmons M.45,Cavosie Aaron J.5

Affiliation:

1. Niels Bohr Institute, University of Copenhagen, Blegdamsvej 17, 2100 Copenhagen, Denmark

2. Department of Geology, Lund University, Sölvegatan 12, 22362 Lund, Sweden

3. Natural History Museum Denmark, University of Copenhagen, Øster Voldgade 5-7, 1350 Copenhagen, Denmark

4. Jacobs–JETS, NASA Johnson Space Center, Astromaterials Research and Exploration Science Division, Mail Code XI3, 2101 NASA Parkway, Houston, Texas 77058, USA

5. Space Science and Technology Centre, The Institute for Geoscience Research (TIGeR), School of Earth and Planetary Sciences, Curtin University, Perth, GPO Box U1987, WA 6845, Australia

Abstract

Little is known about the microstructural behavior of magnetite during hypervelocity impact events, even though it is a widespread accessory mineral and an important magnetic carrier in terrestrial and extraterrestrial rocks. We report systematic electron backscatter diffraction crystallographic analysis of shock features in magnetite from a transect across the 52-km-diameter ca. 380 Ma Siljan impact structure in Sweden. Magnetite grains in granitoid samples contain brittle fracturing, crystal-plasticity, and lamellar twins. Deformation twins along {111} with shear direction of <112> are consistent with spinel-law twins. Inferred bulk shock pressures for the investigated samples, as constrained by planar deformation features (PDFs) in quartz and shock twins in zircon, range from 0 to 20 GPa; onset of shock-induced twinning in magnetite is observed at >5 GPa. These results highlight the utility of magnetite to record shock deformation in rocks that experience shock pressures >5 GPa, which may be useful in quartz-poor samples. Despite significant hydrothermal alteration and the variable transformation of host magnetite to hematite, shock effects are preserved, which demonstrates that magnetite is a reliable mineral for preserving shock deformation over geologic time.

Publisher

Geological Society of America

Subject

Geology

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