Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/114004
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Title: Realization of broadband ultrasonic chiral Landau levels in an elastic metamaterial
Authors: Chen, Y
Lan, Z
Fan, L 
Liang, S 
An, L 
Zhu, J
Su, Z 
Issue Date: 1-May-2025
Source: Physical review B : covering condensed matter and materials physics, 1 May 2025, v. 111, no. 18, 184303
Abstract: Metamaterials with Landau levels induced by synthetic pseudomagnetic fields present an exciting avenue for manipulating elastic waves. Traditionally, these Landau levels in elastic metamaterials are generated by out-of-plane pseudomagnetic fields, resulting in flat-band dispersions with limited bandwidth. In this study, we develop an elastic metamaterial with broadband ultrasonic chiral Landau levels induced by in-plane pseudomagnetic fields, which are synthesized by introducing linearly increased effective Dirac mass via locally breaking the inversion symmetry of each unit cell. We experimentally observe broadband zeroth-order chiral Landau levels for ultrasonic energy transmission. Additionally, we report the experimental observation of snake states, arising from the interaction between zeroth-order and first-order Landau levels. The excellent robustness of the chiral Landau levels is also experimentally validated. Our work suggests a way for realizing broadband ultrasonic chiral Landau levels in elastic systems, with promising potential for applications in engineering devices for integrated communication of elastic waves.
Publisher: American Physical Society
Journal: Physical review B : covering condensed matter and materials physics 
ISSN: 2469-9950
EISSN: 2469-9969
DOI: 10.1103/PhysRevB.111.184303
Rights: ©2025 American Physical Society
The following publication Chen, Y., Lan, Z., Fan, L., Liang, S., An, L., Zhu, J., & Su, Z. (2025). Realization of broadband ultrasonic chiral Landau levels in an elastic metamaterial. Physical Review B, 111(18), 184303 is available at https://doi.org/10.1103/PhysRevB.111.184303.
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