Kaiming Liu
Papers
1
Total Citations
4
H-Index
1
About
Kaiming Liu is a rising researcher in the field of wave physics and structural mechanics, with a focus on the active control and manipulation of elastic waves in thin plates. Their work bridges the gap between theoretical wave phenomena and practical engineering applications, particularly through the design of novel metamaterial lenses. Liu's most notable contribution is the "Active encoding of flexural wave with non-diffractive Talbot effect," which introduces a flexural Mikaelian lens designed via conformation transformation. This study, already garnering 4 citations since its 2024 publication, demonstrates the self-focusing properties of flexural waves through rigorous ray trajectory equations, simulations, and experimental validation. By enabling precise wave focusing and non-diffractive propagation, Liu's research holds promise for advanced vibration control, energy harvesting, and non-destructive testing. Their work stands out for integrating active encoding with classical wave phenomena, offering a new paradigm for designing adaptive wave-guiding structures. As a young investigator, Liu is quickly establishing a reputation for innovative experimental approaches that validate complex theoretical models, making their research both impactful and accessible to the broader mechanics and acoustics communities.
Research Focus
Key Achievements
Top Papers
- 1Active encoding of flexural wave with non-diffractive Talbot effect4 citations · 2024