By simulating earthquakes in a lab, Caltech engineers have provided strong experimental support for a form of earthquake propagation now thought responsible for the magnitude-9.0 earthquake that devastated the coast of Japan in 2011. "Our novel experimental approach has enabled us to look into the earthquake process up close, and to uncover key features of rupture propagation and friction evolution in rock gouge," says Vito Rubino, research scientist and lead author of the Nature paper. The Nature paper is titled "Intermittent lab earthquakes in dynamically weakening fault gouge." Rubino and his co-authors Nadia Lapusta, Lawrence A. Hanson, Jr., Professor of Mechanical Engineering and Geophysics, and Ares Rosakis, Theodore von Kármán Professor of Aeronautics and Mechanical Engineering, show that so-called "stable" or "creeping" faults are not actually immune to major ruptures after all, as previously suspected. [Caltech story]
![Vito Rubino](https://divisions-prod.s3.amazonaws.com/eas70/Imported%20News%20Images/images/Rubino_Vito.width-450.png)
![Nadia Lapusta](https://divisions-prod.s3.amazonaws.com/eas70/Imported%20News%20Images/images/2019-01-18-Nadia-Lapusta_2.width-450.jpg)
![Ares Rosakis](https://divisions-prod.s3.amazonaws.com/eas70/Imported%20News%20Images/images/Rosakis_2104.width-450.jpg)
![Grains at Fault Boundaries](https://divisions-prod.s3.amazonaws.com/eas70/Imported%20News%20Images/images/Fig2c.max-1400x800.width-450.png)
![Vito Rubino](https://divisions-prod.s3.amazonaws.com/eas70/Imported%20News%20Images/images/Rubino_Vito.max-1400x800.png)
![Nadia Lapusta](https://divisions-prod.s3.amazonaws.com/eas70/Imported%20News%20Images/images/2019-01-18-Nadia-Lapusta_2.max-1400x800.jpg)
![Ares Rosakis](https://divisions-prod.s3.amazonaws.com/eas70/Imported%20News%20Images/images/Rosakis_2104.max-1400x800.jpg)