Seismicity recorded in hematite fault mirrors in the Rio Grande rift

Author:

Odlum M.L.1ORCID,Ault A.K.1,Channer M.A.1,Calzolari G.1

Affiliation:

1. Department of Geosciences, Utah State University, 4505 Old Main Hill, Logan, Utah 84322, USA

Abstract

Abstract Exhumed fault rocks provide a textural and chemical record of how fault zone composition and architecture control coseismic temperature rise and earthquake mechanics. We integrated field, microstructural, and hematite (U-Th)/He (He) thermochronometry analyses of exhumed minor (square-centimeter-scale surface area) hematite fault mirrors that crosscut the ca. 1400 Ma Sandia granite in two localities along the eastern flank of the central Rio Grande rift, New Mexico. We used these data to characterize fault slip textures; evaluate relationships among fault zone composition, thickness, and inferred magnitude of friction-generated heat; and document the timing of fault slip. Hematite fault mirrors are collocated with and crosscut specular hematite veins and hematite-cemented cataclasite. Observed fault mirror microstructures reflect fault reactivation and strain localization within the comparatively weaker hematite relative to the granite. The fault mirror volume of some slip surfaces exhibits polygonal, sintered hematite nanoparticles likely created during coseismic temperature rise. Individual fault mirror hematite He dates range from ca. 97 to 5 Ma, and ~80% of dates from fault mirror volume aliquots with high-temperature crystal morphologies are ca. 25–10 Ma. These aliquots have grain-size–dependent closure temperatures of ~75–108 °C. A new mean apatite He date of 13.6 ± 2.6 Ma from the Sandia granite is consistent with prior low-temperature thermochronometry data and reflects rapid, Miocene rift flank exhumation. Comparisons of thermal history models and hematite He data patterns, together with field and microstructural observations, indicate that seismicity along the fault mirrors at ~2–4 km depth was coeval with rift flank exhumation. The prevalence and distribution of high-temperature hematite grain morphologies on different slip surfaces correspond with thinner deforming zones and higher proportions of quartz and feldspar derived from the granite that impacted the bulk strength of the deforming zone. Thus, these exhumed fault mirrors illustrate how evolving fault material properties reflect but also govern coseismic temperature rise and associated dynamic weakening mechanisms on minor faults at the upper end of the seismogenic zone.

Publisher

Geological Society of America

Subject

Stratigraphy,Geology

Reference134 articles.

1. A spectacular exposure of the Tijeras fault, with evidence for Quaternary motion;Abbott;Geology of the Santa Fe Region, New Mexico: New Mexico Geological Society Guidebook 46,1995

2. The anatomy of a long-lived fault system: Structural and thermochronologic evidence for Laramide to Quaternary activity in the Tijeras fault system, New Mexico;Abbott;New Mexico Bureau of Geology and Mineral Resources Bulletin,2004

3. Image processing with ImageJ;Abràmoff;Biophotonics International,2004

4. Stress history and tectonic development of the Rio Grande rift;Aldrich;New Mexico: Journal of Geophysical Research–Solid Earth,1986

5. Structural Geology Algorithms: Vectors & Tensors;Allmendinger,2013

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