1991Geophysical Research LettersRequires access

Paleomagnetism of three upper Jurassic ash‐flow sheets in southeastern Arizona: Implications for regional deformation

Jonathan T. Hagstrum, Peter W. Lipman

Open publisher page 11 citations

Abstract

A sequence of three petrologically distinct Upper Jurassic ash‐flow tuffs has been sampled for paleomagnetic analysis in the Huachuca Mountains, Canelo Hills, and Mustang Mountains of southeastern Arizona. Site‐mean paleomagnetic directions for these units indicate significant vertical‐axis rotations between sampling localities (≃15°–40°), and a comparison of these and previously published data with reference directions from the Colorado Plateau implies that the Jurassic rocks in southeastern Arizona have been rotated in a clockwise sense with respect to stable North America. These new data are consistent with paleomagnetic results showing clockwise rotation of Upper Cretaceous rocks in south central Arizona, and further indicate that studies of North American apparent polar wander based on rocks from southern Arizona could be subject to error. The clockwise rotations in southern Arizona are likely related to Late Cretaceous and early Tertiary strike‐slip movement on northwest‐trending high‐angle faults in the region, and this movement may be linked to an increase in oblique Farallon‐North American plate convergence at that time.

About this research paper

What this paper is about

A sequence of three petrologically distinct Upper Jurassic ash‐flow tuffs has been sampled for paleomagnetic analysis in the Huachuca Mountains, Canelo Hills, and Mustang Mountains of southeastern Arizona. Site‐mean paleomagnetic directions for these units indicate significant vertical‐axis rotations between sampling localities (≃15°–40°), and a comparison of these and previously published data with reference directions from the Colorado Plateau implies that the Jurassic rocks in southeastern Arizona have been rotated in a clockwise sense with respect to stable North America. These new data are consistent with paleomagnetic results showing clockwise rotation of Upper Cretaceous rocks in south central Arizona, and further indicate that studies of North American apparent polar wander based on rocks from southern Arizona could be subject to error. The clockwise rotations in southern Arizona are likely related to Late Cretaceous and early Tertiary strike‐slip movement on northwest‐trending high‐angle faults in the region, and this movement may be linked to an increase in oblique Farallon‐North American plate convergence at that time.

Why it matters

OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A sequence of three petrologically distinct Upper Jurassic ash‐flow tuffs has been sampled for paleomagnetic analysis in the Huachuca Mountains, Canelo Hills, and Mustang Mountains of southeastern Arizona. Site‐mean paleomagnetic directions for these units indicate significant vertical‐axis rotations between sampling localities (≃15°–40°), and a comparison of these and previously published data with reference directions from the Colorado Plateau implies that the Jurassic rocks in southeastern Arizona have been rotated in a clockwise sense with respect to stable North America. These new data are consistent with paleomagnetic results showing clockwise rotation of Upper Cretaceous rocks in south central Arizona, and further indicate that studies of North American apparent polar wander based on rocks from southern Arizona could be subject to error. The clockwise rotations in southern Arizona are likely related to Late Cretaceous and early Tertiary strike‐slip movement on northwest‐trending high‐angle faults in the region, and this movement may be linked to an increase in oblique Farallon‐North American plate convergence at that time.

Key concepts: Paleomagnetism, Geology, Clockwise, Apparent polar wander, Cretaceous, Paleontology, Terrane, Batholith

Related papers

Back to paper searchBrowse research topicsOriginal source
Paleomagnetism of three upper Jurassic ash‐flow sheets in southeastern Arizona: Implications for regional deformation — Research Paper | ScholarLens