Vincent Tournat
Centre National de la Recherche Scientifique, Harvard University
Papers
3
Total Citations
372
H-Index
3
About
Vincent Tournat is a leading figure in nonlinear wave physics and mechanical metamaterials, whose work bridges fundamental mechanics with transformative engineering applications. His research centers on the design and control of wave propagation in complex, multistable architectures—structures that can exist in multiple stable configurations. Tournat’s most impactful contribution is the concept of guided transition waves in multistable mechanical metamaterials, a breakthrough published in 2020 that has garnered 266 citations. This work extended the study of propagating domain boundaries from simple one-dimensional systems to higher-dimensional blueprints, opening new avenues for wave-based information processing and energy management. He has also pioneered the automated discovery of reprogrammable nonlinear dynamic metamaterials (2024, 66 citations), demonstrating how machine learning can unlock adaptive wave control. In a striking application, Tournat showed that solitary waves can drive motion in flexible structures, leading to the development of pulse-driven robots (2020, 40 citations). His work has reshaped how researchers think about nonlinear waves—not just as phenomena to be mitigated, but as tools for locomotion, switching, and reprogrammable functionality. Tournat’s research sits at the intersection of physics, materials science, and robotics, offering a compelling vision for the next generation of intelligent, wave-controlled materials.
Research Focus
Key Achievements
Top Papers
- 1Guided transition waves in multistable mechanical metamaterials266 citations · 2020
- 2Automated discovery of reprogrammable nonlinear dynamic metamaterials66 citations · 2024
- 3Pulse-driven robot: Motion via solitary waves40 citations · 2020