Area of research
Signal Processing · Biomedical Engineering
Research interest
Research interests include Acoustic Wave Phenomena Research, Metamaterials and Metasurfaces Applications, Music and Audio Processing, and Music Technology and Sound Studies.
Topology-optimized reflection-type pentamode metasurfaces for broadband underwater beam regulation
Collaborative non-local topology optimization of gradient acoustic metasurfaces for broadband extreme reflection modulation
End-to-end inverse design for programmable acoustic tweezers with simultaneous force and torque control by metasurfaces
Topology optimization of programable quasi-zero-stiffness metastructures for low-frequency vibration isolation
Multitrack Music Transformer
Deep-learning-aided metasurface design for megapixel acoustic hologram
CLIPSonic: Text-to-Audio Synthesis with Unlabeled Videos and Pretrained Language-Vision Models
Broadband high-efficiency acoustic vortices via a topology-optimized space-coiling-cavity metasurface
Broadband Coding Metasurfaces with 2-bit Manipulations
Achieving ultra-broadband and ultra-low-frequency surface wave bandgaps in seismic metamaterials through topology optimization
Reflection-type broadband coding metasurfaces for acoustic focusing and splitting
Deep learning of dispersion engineering in two-dimensional phononic crystals
Topology optimization of periodic barriers for surface waves
Systematic design and realization of double-negative acoustic metamaterials by topology optimization
Broadband single-phase hyperbolic elastic metamaterials for super-resolution imaging
Topology optimization of anisotropic broadband double-negative elastic metamaterials
Topology Optimization of Chiral Phoxonic Crystals With Simultaneously Large Phononic and Photonic Bandgaps
Inverse design of high- Q wave filters in two-dimensional phononic crystals by topology optimization
Reducing symmetry in topology optimization of two-dimensional porous phononic crystals
Topological optimization of two-dimensional phononic crystals based on the finite element method and genetic algorithm
Multi-objective optimization of two-dimensional porous phononic crystals
Topology optimization of simultaneous photonic and phononic bandgaps and highly effective phoxonic cavity
Topology optimization of two-dimensional asymmetrical phononic crystals