Temporal super-cell engineering and acoustic amplification in dispersive phononic time crystals
Abstract
Abstract Floquet time crystals, characterized by momentum band gaps ( k -gaps), offer powerful mechanisms for exotic wave control. However, selectively harnessing the Floquet band structure and opening multiple k -gaps remains a significant challenge in experiment. In this work, we construct a phononic time crystal by integrating discrete resonant meta-atoms into a one-dimensional acoustic waveguide, effectively creating a time-varying metamaterial. Through dynamic compressibility modulation, we observe amplified transmission and strong emission enhancement for a compact Floquet slab at the k -gap-associated frequency. Based on this versatile platform, we further extend the Floquet band physics by introducing a temporal-supercell concept that creates multiple k -gaps via momentum band folding. By suitably designing the compressibility in each phase of the supercell, we experimentally observe two clear amplified transmission frequency ranges around half and quarter of the original modulation frequency, for a corresponding compact Floquet slab with a band-folding-induced k-gap. This reconfigurable platform enables tailored parametric processes and unlocks pathways to higher-dimensional time crystals and topological temporal phenomena.
Article Details
Authors (10)
Ziling Liu
First Hospital of Jilin University, Changchun, China
Xinghong Zhu
Zhi-Guo Zhang
Wei-Min Zhang
Department of Physics and the Center for Quantum Information Science, National Cheng Kung University , Tainan 70101,
Xue Chen
Yong-Qiang Yang
Ruwen Peng
Mu Wang
Jensen Li
Hong-Wei Wu