Colin Scheibner
Papers
7
Total Citations
71
H-Index
5
About
Colin Scheibner is a researcher working at the cutting edge of active matter physics, soft robotics, and mechanical metamaterials. His work focuses on understanding and engineering materials composed of energy-generating, sensing, and computing components — systems that blur the boundary between passive materials and autonomous machines. Scheibner has made significant contributions to the theory and realization of *odd elasticity*, a form of mechanical response that emerges when microscopic interactions break the classical principle of reciprocity. His studies on self-sensing metamaterials with odd micropolarity and topological defects in non-reciprocal active solids have helped establish a rigorous continuum mechanics framework for these exotic material classes. Notably, his most-cited work, "Adaptive locomotion of active solids" (2025, 41 citations), demonstrates how structured active matter can achieve robot-like motion, while his research on limit cycles reveals principled strategies for controlling otherwise unstable active systems. Through experimental realizations using piezoelectric elements and electronic feedback, Scheibner bridges theory and physical implementation. Collectively, his contributions are shaping a new paradigm of programmable, autonomous materials with broad implications for soft robotics and functional material design.
Research Focus
Key Achievements
Top Papers
- 1Adaptive locomotion of active solids41 citations · 2025
- 2Limit cycles turn active matter into robots10 citations · 2021
- 3Self-sensing metamaterials with odd micropolarity6 citations · 2020
- 4Realization of active metamaterials with odd micropolar elasticity5 citations · 2021
- 5Topological defects in non-reciprocal active solids with odd elasticity5 citations · 2020
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