Active normal faulting in the upper plate of the Alaska subduction zone

The Alaska subduction zone exhibits large along-strike variations in interseismic coupling and seismic behavior, yet the long-term structural response of the overriding forearc to these variations remains poorly constrained. We document active normal-sense faulting on Chirikof Island within the Semidi segment that lies between the contrasting plate-interface behavior and upper-plate deformation styles of the Kodiak and Shumagin segments. Geomorphic and geochronologic data indicate 4−9 m of cumulative slip and that fault-scarp development continued after ca. 6 ka, with evidence suggesting multiple episodes of fault reactivation. Bedrock structures and thermochronologic data indicate that this normal faulting represents a recent shift from prolonged shortening to extension in this part of the forearc. This deformation change coincides with the along-strike transition from persistent thrusting in the Kodiak segment to large-scale normal faulting in the Shumagin segment. We propose that variations in subducting-plate fabric orientation and inherited seafloor heterogeneities may influence plate-interface mechanics and the stress state of the upper plate, potentially contributing to the contrasting deformation styles. The normal-sense fault reactivation may enhance tsunami generation during large megathrust earthquakes.

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Publication Details

Journal
Geology
Published
2026-10-09
DOI
https://doi.org/10.1130/g54733.1
Primary Topic
earthquake and tectonic studies
Type
article
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article

Active normal faulting in the upper plate of the Alaska subduction zone

Kristin Diane Morell, Tammy M. Rittenour, Peter J. Haeussler, Suoya Fan
Geology
earthquake and tectonic studies
article

Active normal faulting in the upper plate of the Alaska subduction zone

Kristin Diane Morell, Tammy M. Rittenour, Peter J. Haeussler, Suoya Fan
article en

Abstract

The Alaska subduction zone exhibits large along-strike variations in interseismic coupling and seismic behavior, yet the long-term structural response of the overriding forearc to these variations remains poorly constrained. We document active normal-sense faulting on Chirikof Island within the Semidi segment that lies between the contrasting plate-interface behavior and upper-plate deformation styles of the Kodiak and Shumagin segments. Geomorphic and geochronologic data indicate 4−9 m of cumulative slip and that fault-scarp development continued after ca. 6 ka, with evidence suggesting multiple episodes of fault reactivation. Bedrock structures and thermochronologic data indicate that this normal faulting represents a recent shift from prolonged shortening to extension in this part of the forearc. This deformation change coincides with the along-strike transition from persistent thrusting in the Kodiak segment to large-scale normal faulting in the Shumagin segment. We propose that variations in subducting-plate fabric orientation and inherited seafloor heterogeneities may influence plate-interface mechanics and the stress state of the upper plate, potentially contributing to the contrasting deformation styles. The normal-sense fault reactivation may enhance tsunami generation during large megathrust earthquakes.

Geology
Utah State University (US), United States Geological Survey (US), University of California, Santa Barbara (US)
Openalex Percentile: Top 16%
earthquake and tectonic studies
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