New study reveals potential synchronization of Cascadia and San Andreas faults

A new study indicates that the Cascadia subduction zone and the northern San Andreas fault may trigger earthquakes in close succession, potentially amplifying disaster risks along the U.S. West Coast. Researchers identified evidence of such synchronization in ocean floor sediment cores spanning 3,100 years. This connection could affect cities from San Francisco to Vancouver simultaneously.

Two major fault systems on North America's West Coast—the Cascadia subduction zone and the San Andreas fault—may be more interconnected than previously thought, according to research led by Chris Goldfinger, a marine geologist at Oregon State University. The study, published in Geosphere, analyzed turbidites in sediment cores from the ocean floor, revealing patterns that suggest earthquakes on one fault can trigger events on the other within minutes or hours. Goldfinger noted three instances in the past 1,500 years, including 1700, where this occurred, based on similarities in sediment layers near Cape Mendocino, California, where the faults meet. These unusual 'doublets'—reversed layers of coarse and fine sediment—point to back-to-back quakes rather than aftershocks, confirmed by radiocarbon dating. Materials provided by Oregon State University. Journal reference: C. Goldfinger et al., Geosphere, 2025; 21 (6): 1132, DOI: 10.1130/GES02857.1. Goldfinger warned that a synchronized event could overwhelm response resources. 'We could expect that an earthquake on one of the faults alone would draw down the resources of the whole country to respond to it,' he said. 'And if they both went off together, then you've got potentially San Francisco, Portland, Seattle, and Vancouver all in an emergency situation in a compressed timeframe.' The finding builds on decades of research, including a 1999 cruise where an off-course core sample provided key evidence. The study involved collaborators from Oregon State, NOAA, University of Washington, and institutions in Germany and Spain. While scientists have theorized fault interactions, real-world evidence has been limited, with Sumatra's 2004-2005 quakes as a rare example three months apart. This research underscores the need for enhanced West Coast earthquake preparedness.

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Damaged roads and buildings in northern Chile after a major earthquake, with people evacuating.
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6.9 magnitude earthquake affects northern Chile with epicenter near Calama

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A 6.9 magnitude earthquake struck on Monday, May 25 at 17:52 with its epicenter 20 kilometers northeast of Calama. The quake was felt across four northern regions and caused power outages and mining halts.

Scientists have captured the first clear images of a subduction zone breaking apart beneath the Pacific Northwest. The Juan de Fuca plate is splitting into fragments as it sinks under the North American plate. The findings, from a 2021 seismic experiment, reveal a gradual tearing process.

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A new study finds that tectonic stress along Southern California's San Andreas and San Jacinto faults has reached levels unseen in the past millennium. Researchers identified Cajon Pass as an earthquake gate that could allow a rupture to spread across both systems. The findings, based on a physics-based model, highlight conditions that historically preceded major multi-fault events.

Gases from hot springs in central Zambia show signs of mantle fluids rising to the surface, suggesting an early-stage continental rift. Researchers say this could mark the start of a new tectonic plate boundary. The findings come from samples collected in the Kafue Rift.

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A magnitude 6.0 earthquake recorded at 17:34 on Sunday, May 31, shook central Chile with its epicenter 23 kilometers west of Quintero.

A magnitude 5.6 earthquake struck on Thursday, May 14, with its epicenter in Chocó and was felt across multiple regions of the country without causing major damage.

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