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相关论文: Flexural wave energy harvesting by the topological…

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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 interfaces, specifically designed to achieve topological rainbow…

应用物理 · 物理学 2025-02-11 Xiao-Lei Tang , Xue-Qian Zhang , Tian-Xue Ma , Miso Kim , Yue-Sheng Wang

We report the design of silica-based 1D phononic crystals (PnCs) with topologically distinct complete phononic bandgaps (PnBGs) and the observation of a topologically protected state of elastic waves at their interface. By choosing…

介观与纳米尺度物理 · 物理学 2017-12-20 Ingi Kim , Satoshi Iwamoto , Yasuhiko Arakawa

The operating frequency range of passive topological phononic crystals is generally fixed and narrow, limiting their practical applications. To overcome this difficulty, here we design and investigate a one-dimensional soft dielectric…

软凝聚态物质 · 物理学 2022-10-25 Yingjie Chen , Bin Wu , Michel Destrade , Weiqiu Chen

Vibration energy harvesting is a technology that enables electric power generation by augmenting vibrating materials or structures with piezoelectric elements. In a recent work, we quantified the intrinsic energy-harvesting availability of…

应用物理 · 物理学 2024-11-15 Ibrahim Patrick , Sondipon Adhikari , Mahmoud I. Hussein

Phononic crystals (PnCs) are artificially patterned media exhibiting bands of allowed and forbidden zones for phonons. Many emerging applications of PnCs from solid-state simulators to quantum memories could benefit from the on-demand…

Topological phononic crystals have attracted intensive attention due to their peculiar topologically protected interface or edge states. Their operating frequency, however, is generally fixed once designed and fabricated. Here, we propose…

软凝聚态物质 · 物理学 2021-07-23 Yingjie Chen , Bin Wu , Jian Li , Stephan Rudykh , Weiqiu Chen

Topological interface states (TISs) in phononic crystals (PnCs) are robust acoustic modes against external perturbations, which are of great significance in scientific and engineering communities. However, designing a pair of PnCs with…

应用物理 · 物理学 2025-02-18 Xue-Qian Zhang , Yi-Da Liu , Xiao-Shuang Li , Tian-Xue Ma , Yue-Sheng Wang , Zhuo Zhuang

Topological photonics provides a robust and flexible platform for controlling light, enabling functionalities such as backscattering-immune edge transport and slow-light propagation. In this work, we design and characterize photonic…

光学 · 物理学 2025-05-12 Ondřej Novák , Martin Veis , Gervasi Herranz

Wave mode conversion allows to transform energy from one propagating wave type to another at a boundary where a change in material properties or geometry occurs. Converting longitudinal waves to flexural ones is of particular interest in…

Topological phononic crystals (PCs) are periodic artificial structures which can support nontrivial acoustic topological bands, and their topological properties are linked to the existence of topological edge modes. Most previous studies…

介观与纳米尺度物理 · 物理学 2018-08-01 Degang Zhao , Meng Xiao , C. W. Ling , C. T. Chan , Kin Hung Fung

Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutionized our scientific cognition of acoustic/elastic systems. Due to their nontrivial topological characteristics, edge (interface)waves are…

应用物理 · 物理学 2021-04-28 Weijian Zhou , Weiqiu Chen , Michel Destrade , C. W. Lim

The energy harvesting capability of resonant harvesting structures, such as piezoelectric cantilever beams, can be improved by utilizing coupled oscillations that generate favourable strain mode distributions. In this work, we present the…

材料科学 · 物理学 2019-02-04 Mengying Xie , Yan Zhang , Marcin J. Kraśny , Andrew Rhead , Chris Bowen , Mustafa Arafa

Phononic crystals (PnCs) are periodic engineered media that can customize the spatio-temporal characteristics of mechanical energy propagation. PnCs that additionally leverage precisely embedded defects can achieve robust energy…

应用物理 · 物理学 2025-05-16 Vinod Ramakrishnan , Kathryn H. Matlack

In the field of phononics, periodic patterning controls vibrations and thereby the flow of heat and sound in matter. Bandgaps arising in such phononic crystals realize low-dissipation vibrational modes and enable applications towards…

This paper proposes a method for generating phononic frequency combs (PFCs) using defect-localized modes in a two-dimensional hexagonal phononic crystal. Localized vibration modes from a singular point defect produce evenly spaced spectral…

应用物理 · 物理学 2025-12-01 Suhas Suresh Bharadwaj , Murtaza Rangwala , Adarsh Ganesan

Interface states in photonic crystals usually require defects or surface/interface decorations. We show here that one can control interface states in 1D photonic crystals through the engineering of geometrical phase such that interface…

光学 · 物理学 2017-04-06 Wensheng Gao , Meng Xiao , Baojie Chen , Edwin Y. B. Pun , C. T. Chan , Wing Yim Tam

Mitigating low-frequency vibration or noise is of vital importance to both human health and mechanical engineering. Two-dimensional phononic crystal (PC) structures were proposed by attaching rubber and metallic cylinders on one or both…

应用物理 · 物理学 2025-06-26 Hao Zhu , Kai Zhao

We developed a hydrodynamic model of plasmonic crystals formed in the current-driven grating gate transistor structures. The model demonstrates that the quality factor of plasmonic resonances could be increased by using ungated regions with…

介观与纳米尺度物理 · 物理学 2025-04-03 G. R. Aizin , J. Mikalopas , M. Shur

We demonstrate that HOTIs with the quantization of the quadrupole moments can be realized in the two-dimensional elastic phononic crystals (PnCs). Both one-dimensional (1D) topological edge states and zero-dimensional (0D) topological…

应用物理 · 物理学 2019-09-12 Zhen Wang , Qi Wei , Heng-Yi Xu , Da-Jian Wu

Topological interface states are currently attracting rapidly growing attention in classical wave systems. However, little work has been done on topological interface states in one-dimensional (1D) elastic wave systems, especially in the…

应用物理 · 物理学 2024-09-20 Pan Li , Wenping Hu , Pai Peng , Xuefeng Zhu , Degang Zhao
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