RJ
Member Since 2009
Romain Jolivet
Associate Professor, Ecole Normale Superieure
Professional Experience
Ecole Normale Superieure
Associate Professor
2015 - Present
Education
Doctorate
2011
Honors & Awards
Jason Morgan Early Career Award
Received December 2017
Romain Jolivet will receive the 2017 Jason Morgan Early Career Award at the 2017 American Geophysical Union Fall Meeting, held 11–15 December in New Orleans, La. The award is for “outstanding and significant early career contributions to tectonophysi...
Romain Jolivet will receive the 2017 Jason Morgan Early Career Award at the 2017 American Geophysical Union Fall Meeting, held 11–15 December in New Orleans, La. The award is for “outstanding and significant early career contributions to tectonophysics through a combination of research, education, and outreach activities.”  
Citation

It is my great pleasure to write this citation on behalf of Romain Jolivet, who is honored by AGU with the 2017 Jason Morgan Early Career Award. This well-deserved award recognizes that Romain has already significantly contributed to advancing observation of seismic and aseismic fault slip with interferometric synthetic aperture radar (InSAR). He has in particular designed and implemented a method using predictions from a reanalysis weather model to model tropospheric effects. The method proved very efficient to correcting the effects that have long been a major impediment to the use of InSAR. His methodological contributions, the availability of SAR time series (in particular from Sentinel-1, which provides global coverage with a 12-day revisit time), and the possibility of combining with Global Navigation Satellite Systems (GNSS) data, make it possible to measure the time evolution of fault slip with unprecedented temporal and spatial resolution. He demonstrated this possibility by revealing a surprisingly rich dynamic in his studies of various faults in Tibet, California, and Anatolia. Romain also contributed to studies of a number of recent earthquakes in which he used a rigorous inverse theory approach to assess the distribution and slip and subsurface fault geometries. Such observations are key to investigating the factors that favor seismic or aseismic fault creep, which remains a very central and poorly understood issue.

Romain is a rigorous, creative, and productive young scientist at the cutting edge of the use of space observation for seismotectonic studies. I look forward to seeing the fruits of his continued effort at extracting new learning from InSAR and GNSS data, which will accumulate in the decades to come. I am confident more stunning results will come out of this promising venture.

—Jean-Philippe Avouac, California Institute of Technology, Pasadena

Response
I would like to thank Jean-Philippe for nominating me as well as those who wrote letters to support this nomination. I feel quite honored by the recognition and the trust he has put in me to pursue my career. I thank the committee and AGU for this award. I came to study active faults quite by chance, thanks to a number of wonderful researchers I now consider mentors and friends. While studying as an undergrad at École Normale Supérieure (ENS) in Paris, France, I discovered the study of active faults and earthquakes with Prof. Rodolphe Cattin (now in Montpellier), who, a year later, pushed me to contact Prof. Roland Bürgmann at UC Berkeley for a research internship. Roland accepted and gave me the fantastic opportunity to lead my first research project, involving the measurement of elastic strain increase along the San Andreas Fault with GPS. In his group, I came to think InSAR was a very powerful tool, and Dr. Cécile Lasserre offered me to join her for a Ph.D. in Grenoble. The scientific environment at Université Joseph Fourier (now named Université Grenoble Alpes), the mountains, and Cécile’s advice guided me for years there. In particular, I got to meet and work with Prof. Gilles Peltzer, UCLA, now a very good friend. Moving to Caltech was then an opportunity to learn more and develop my own projects. I worked closely with Prof. Mark Simons on numerous topics, got to supervise my first students, and learned every day from morning coffee discussions. In Cambridge in the United Kingdom, I had the chance to work with Dr. Alex Copley and joined the COMET community. There, I finally came to work with Jean-Philippe to carry on from our daily discussions we had started at Caltech. Now that I have been hired as a faculty member at ENS, Paris, I wish to reiterate my thanks to all the people aforementioned for providing guidance and allowing me to become a research scientist and an academic supervisor. I sincerely hope to be able to do the same for the students I will supervise, keeping their advice in my mind. I am looking forward to more scientific discussions and also, simply, to spend some nice enjoyable time with all of them, mentors and friends. Finally, this journey through academia would not have been possible without the incommensurable support from my parents; my sister and brother; and my partner, Elsa. —Romain Jolivet, École Normale Supérieure, Paris, France
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Publications
Daily to Centennial Behavior of Aseismic Slip Along the Central Section of the North Anatolian Fault

Slow, aseismic slip plays a crucial role in the initiation, propagation, and arrest of large earthquakes along active faults. In addition, aseismic...

July 13, 2023
AGU Abstracts
Modeling Slow Slip Events on the Hikurangi Subduction Zone using Independent Component Analysis
SLOW-TO-FAST EARTHQUAKES FROM SHALLOW TO DEEP: OBSERVATIONS, EXPERIMENTS, AND NUMERICAL MODELING V ELIGHTNING
tectonophysics | 13 december 2023
Sylvain MICHEL, Romain Jolivet, Emilie Klein
In this study, we model Slow Slip Events (SSEs) occurring on the Hikurangi subduction zone, New Zealand, during the 2009-2022 time period based on the...
View Abstract
Detection of millimiter-scale slow slip events on continental faults in InSAR using deep learning
RECENT ADVANCES IN SAR AND INSAR PROCESSING, BIG DATA ANALYSIS, AND EARTH SCIENCE APPLICATIONS II ORAL
geodesy | 12 december 2023
Bertrand Rouet-Leduc, Sylvain MICHEL, Claudia Hulb...
Faults can accommodate stress in a variety of slip modes, from dynamic rupture to slow slip events and aseismic slip. Among these slip modes, slow sli...
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Continuous Monitoring of Deformation and Associated Uncertainties with InSAR
RECENT ADVANCES IN SAR AND INSAR PROCESSING, BIG DATA ANALYSIS, AND EARTH SCIENCE APPLICATIONS III POSTER
geodesy | 12 december 2023
Manon Dalaison, Romain Jolivet, Béatrice Pinel-Pu...
Interferometric Synthetic Aperture Radar (InSAR) combines two radar images into an image of phase change that is a function of ground deformation, atm...
View Abstract

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