Area of research
Biomedical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Acoustics, Metamaterial, Optics, Materials science, Broadband, and Physics.
Low-frequency broadband metamaterials for ventilated acoustic insulation
Impedance theory-based elastic metasurface enabling precise mode conversion and preservation
Scattering-free modulation of elastic shear-horizontal waves based on interface-impedance theory
Seismic metamaterials: Generating low-frequency bandgaps induced by inertial amplification
Reconfigurable flexural waves manipulation by broadband elastic metasurface
Inertially amplified seismic metamaterial with an ultra-low-frequency bandgap
Broadband inverted T-shaped seismic metamaterial
Coupling the first and second attenuation zones in seismic metasurface
Reconfigurable curved metasurface for acoustic cloaking and illusion
Acoustic vortices with high-order orbital angular momentum by a continuously tunable metasurface
Broadband tunable lossy metasurface with independent amplitude and phase modulations for acoustic holography
Tunable multifunctional fish-bone elastic metasurface for the wavefront manipulation of the transmitted in-plane waves
Acoustic perfect absorbers via Helmholtz resonators with embedded apertures
Tunable Broadband Reflective Acoustic Metasurface