activity
20172025
most citedFlexural wave energy harvesting by the topological interface state of a phononic crystal beam

2 citations · 2 across the 4 of their papers we have counts for

collaborators
Showing physics.app-phShow all

5 papers · 1 filter

physics.app-ph2025

Accelerated engineering of topological interface states in one-dimensional phononic crystals via deep learning

Xue-Qian Zhang, Yi-Da Liu, Xiao-Shuang Li +3

Topological interface states (TISs) in phononic crystals (PnCs) are robust acoustic modes against external perturbations, which are of great significance in scientific and engineer…

physics.app-ph202522 cited

Customizing pseudospin unidirectional states of acoustic and electromagnetic waves in two-dimensional phoxonic topological insulators via multi-objective strategies

Gang-Gang Xu, Xiao-Shuang Li, Tian-Xue Ma +3

Topological materials for classical waves offer remarkable potential in applications such as sensing, waveguiding and signal processing, leveraging topological protection effects l…

physics.app-ph2024

Topological rainbow trapping and broadband piezoelectric energy harvesting of acoustic waves in gradient phononic crystals with coupled interfaces

Xiao-Lei Tang, Xue-Qian Zhang, Tian-Xue Ma +2

Topological phononic crystals (PCs) offer an innovative method for manipulating acoustic or elastic waves. In this study, we introduce the gradient PC structures with coupled inter…

physics.app-ph20212 cited

Flexural wave energy harvesting by the topological interface state of a phononic crystal beam

Tian-Xue Ma, Quan-Shui Fan, Chuanzeng Zhang +1

In this study, we design the 3D-printed phononic crystal (PnC) beam with the topological interface state for harvesting the mechanical energy of flexural waves. The PnC beam is for…

physics.app-ph2019

Thermal wave crystals based on dual-phase-lag model

Zheng-Yang Li, Tian-Xue Ma, A-Li Chen +2

Thermal wave crystals based on the dual-phase-lag model are investigated in this paper by both theoretical analysis and numerical simulation to control the non-Fourier heat conduct…