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Rapid fault healing from cementation controls the dynamics of deep slow slip and tremor

November 19, 2025

Despite its status as one of the most important discoveries in geophysics, the physical mechanism(s) responsible for slow slip events (SSEs) are not well understood. Here, we synthesize observations of deep SSEs in the Cascadia Subduction Zone and argue that rapid, cohesive fault strengthening may control the dynamics of deep SSEs. Cohesive strength is frequently ignored in constitutive laws used to describe fault rheology in numerical simulations of earthquakes and SSEs alike. To demonstrate its importance, we perform and analyze a suite of petrological experiments that simulate fault healing under representative pressure and temperature conditions. We show that significant cohesive strength recovery caused by dissolution-precipitation processes occurs on timescales of just a few hours. Together, our experimental and observational results support the idea that cohesion is a key component of fault strength under SSE conditions and highlight the need for its inclusion in both future experiments and numerical models of fault slip.

Publication Year 2025
Title Rapid fault healing from cementation controls the dynamics of deep slow slip and tremor
DOI 10.1126/sciadv.adz2832
Authors Amanda Thomas, Jim M Watkins, Nicholas M. Beeler, Melodie French, Whitney M. Behr, Mark H. Reed
Publication Type Article
Publication Subtype Journal Article
Series Title Science Advances
Index ID 70277751
Record Source USGS Publications Warehouse
USGS Organization Earthquake Science Center
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