课题组发表的学术论文
1. W. N. Chen, J. Y. Zheng, J. Y. Lv, L. Wang, and H. W. Wu*, “Rainbow trapping of acoustic skyrmions with subwavelength gradient metastructure,” Chinese Physics B, 35, 094301 (2026).
2. Z. Liu, X. Zhu, Z. G. Zhang, W. M. Zhang, X. Chen, Y. Q. Yang, R. Peng, M. Wang, J. Li, and H. W. Wu*, “Temporal super-cell engineering and acoustic amplification in dispersive phononic time crystals,” Nature Communications 17, 7079 (2026).
3. X. Zhu, H. W. Wu*, J. Li*, “Temporal effective medium for programmable acoustic metamaterials with multiple resonances,” npj Acoustic 1, 26 (2025).
4. J. Y. Zheng, W. N. Chen, J. Y. Lv, L. Wang, H. F. Xu, and H. W. Wu*, “Observation of acoustic spin skyrmion in confined sound field with orbital angular momentum,” Applied Physics Letters 127, 172201 (2025).
5. W. N. Chen, H. W. Wu*, J. Y. Lv, J. Y. Zheng, W. B. Zhang, N. Zhou, and Z. Q. Sheng, “Observation of multitype topological textures in a subwavelength acoustic Mie resonator,” Physical Review B 111, 174302 (2025).
6. L. L. Cheng, H. W. Wu*, Z. X. Huang, S. Z. Cao, and Z. Q. Sheng, “Shaping acoustic discrete Talbot pattern in aperiodic waveguide arrays,” Journal of Applied Physics 137, 173104 (2025).
7. Z. Liu, Y. Zhuo, X. Zhu, Z. G. Zhang, W. M. Zhang, and H. W. Wu*, “Nonreciprocal Willis coupling with active acoustic resonant metastructure for the directional manipulation of scattering waves,” Applied Physics Express 18, 032004 (2025).
8. 张孝悦,徐华锋,陈婉娜,周农,吴宏伟*,“基于定向声源的局域型声学斯格明子模式的选择性激发,” 物理学报 74, 054301(2025)。
9. 黄泽鑫,圣宗强,程乐乐,曹三祝,陈华俊,吴宏伟*,“一维非互易声学晶体的非厄米趋肤态操控,” 物理学报,73, 214301(2024)。
10. 张孝悦,徐华锋,陈婉娜,周农,孙文军,吴宏伟*,“基于梯度结构波导实现的定向声学自旋角动量密度操控,”物理学报73,144301(2024)。
11. Z. X. Huang, H. W. Wu*, L. L. Cheng, P. X. Xie, X. Chen, H. F. Xu, Z. Q. Sheng, “Steering sound propagation with Zrno barriers in acoustic waveguide arrays,” Applied Physics Letters 125, 152201 (2024).
12. P. Hu, H. W. Wu*, P. Xie, Y. Zhuo, W. Sun, Z. Sheng, and Y. Pan*, “Hearing the dynamical Floquet-Thouless pump of a sound pulse,” Physical Review B 110, 085137 (2024).
13. N. Zhou, W. N. Chen, W. J. Sun, Z. Q. Sheng, and H. W. Wu*, “Observation of acoustic meron textures,” Applied Physics Letters 125, 042204 (2024).
14. W. J. Sun, N. Zhou, W. N. Chen, Z. Q. Sheng, and H. W. Wu*, “Acoustic skyrmionic mode coupling and transferring in a chain of subwavelength metasurfaces,” Advanced Science 11, 2401370 (2024).
15. Y. Zhuo, X. Chen*, Z. Liu, Z. Q. Sheng, and H. W. Wu*, “Nonreciprocal intelligent soundproof barrier with active nonlocal acoustic metastructure,” Advanced Materials Technologies 9, 2301693 (2024).
16. S. L. Cheng, H. W. Wu*, W. J. Sun, N. Zhou, C. Y. Peng, Z. Q. Sheng, and W. B. Zhang, “Remote terahertz wireless power transfer with self-resonating spoof plasmonic structures” Optics Express 31, 492279 (2023).
17. X. Zhu, H. W. Wu*, Y. Zhuo, Z. Liu, and J. Li* “Effective medium for time-varying frequency-dispersive acoustic metamaterials,” Physical Review B 108, 104303 (2023).
18. P. Hu, H. W. Wu*, W. J. Sun, N. Zhou, X. Chen, Y. Q. Yang, and Z. Q. Sheng, “Observation of localized acoustic skyrmions,” Applied Physics Letters 122, 022201 (2023).
19. P. X. Xie, Z. Q. Sheng*, Z. X. Huang, P. Hu, and H. W. Wu*, “Subwavelength focusing and steering of spoof acoustic surface waves with aperiodic waveguide arrays,” Applied Physics Letters 122, 222202 (2023).
19. W. J. Sun, H. W. Wu*, P. Hu, N. Zhou, X. Chen, Y. Q. Yang, and Z. Q. Sheng, “Localized manipulation of spoof surface acoustic skyrmions with deep-subwavelength gradient structures,” Applied Physics Letters 122, 202201 (2023).
20. J. Q. Quan, H. W. Wu*, Y. K. Liu, P. X. Xie, and Z. Q. Sheng, “Localization of edge state in acoustic topological insulators by curvature of space,” New Journal of Physics 25, 043009 (2023).
21. Y. Q. Yin, H. W. Wu*, S. L. Cheng, W. J. Sun, and Z. Q. Sheng, “Acoustic metacage with arbitrary shape for broadband and ventilated sound insulation,” Journal of Applied Physics 132, 145101 (2022).
22. Y. Q. Yin, H. W. Wu*, S. L. Cheng, and Z. Q. Sheng, “Switchable directional scattering based on spoof core–shell plasmonic structures,” Chinese Physics B, 31 054101 (2022).
23. S. L. Cheng, H. W. Wu*, and Y. Q. Yin, “Ultrastrong Purcell enhancement of magnetic dipole emission based on quasi-BIC,” European Physical Journal D, 76, 211(2022).
24. B. Wang, J. Q. Quan, J. F. Han, X. P. Sheng*, H. W. Wu*, Y. M. Pan*, “Observation of Photonic Topological Floquet Time Crystals,” Laser & Photonics Reviews 2100469 (2022).
25 X. Wen, X. Zhu, H. W. Wu*, and J. Li, Realizing spatiotemporal effective media for acoustic metamaterials, Phys. Rev. B 104, L060304 (2021)
26. H. W. Wu*, W. Li, S. L. Cheng, Y. Q. Yin, and Z. Q. Sheng, “Acoustic generalized Kerker effect,” Applied Physics Express 14, 095501 (2021).
27. H. W. Wu*, Y. Q. Yin, Z. Q. Sheng, Y. Li, D. Q. Qi, and R. W. Peng, “Multiband omnidirectional ventilated acoustic barriers based on localized acoustic rainbow trapping,” Physical Review Applied 15, 054033(2021).
28. Y. K. Liu, H. W. Wu*, P. Hu, and Z. Q. Sheng, “Spatial Bloch oscillations in acoustic waveguide arrays,” Applied Physics Express 14, 064501 (2021).
29. H. W. Wu*, J. Q. Quan, Y. Q. Yin, and Z. Q. Sheng, “Rainbow trapping of spoof acoustic surface waves in a defective closed surface,” Journal Physics D: Applied Physics 53, 455101 (2020).
30. H. W. Wu*, J. Q. Quan, Y. Q. Yin, and Z. Q. Sheng, “Strong Purcell effect for magnetic dipole emission with spoof plasmonic spiral structure,” Journal of the Optical Society of America B, 37, 98 (2020).
31. Y. K. Liu, Z. Q. Sheng*, H. W. Wu*, “Controlling the direction and intensity of magnetic dipole emission by spoof plasmonic structure, ” Journal of Applied Physics 128, 023103 (2020).
32. 殷允桥,吴宏伟*,“基于人工表面等离激元结构的超表面磁镜,”物理学报,69, 234101(2020).
33. 权家琪, 圣宗强*,吴宏伟*,“基于人工表面等离激元结构的全向隐身,”物理学报,68,154101(2019).
34. H. W. Wu*, J. Q. Quan, R. H. Fan, K. Zhang, and Z. Q. Sheng, “Multiband modulated spoof SPP transmission based on a combined structure,” OSA Continuum 2, 367874 (2019).
35. J. Q. Quan, Z. Q. Sheng*, Y. Fang, R. H. Fan, and H. W. Wu*, “Ultra-directional forward scattering in spoof plasmonic structure,” Applied Physics Express 12, 042002 (2019).
36. 吴文兵, 圣宗强*,吴宏伟*,“平板式螺旋相位板的设计与应用,”物理学报,68, 054102(2019).
37. H. W. Wu*, Y. Fang, J. Q. Quan, Y. Z. Han, Y. Q. Yin, Y. Li, and Z. Q. Sheng, “Multifrequency superscattering with high Q factors from a deep-subwavelength spoof plasmonic structure,” Physical Review B 100, 235443 (2019).
38. H. W. Wu*, Y. Li, H. J. Chen, Z. Q. Sheng, H. Jing, R. H. Fan, and R. W. Peng, “Strong Purcell effect for terahertz magnetic dipole emission with spoof plasmonic structure,” ACS Applied Nano Materials 2, 1045, (2019).
39. H. W. Wu*, H. J. Chen, H. F. Xu, R. H. Fan, and Y. Li*, “Tunable multiband directional electromagnetic scattering from spoof Mie resonant structure,” Science Reports 8, 8817 (2018).
40. H. W. Wu*, H. J. Chen, R. H. Fan, Y. Li and Z. Q. Sheng, “Robust tuning of high-Q spoof plasmonic cavity with surface defect,” Applied physics Express 11, 062202 (2018).
41. H. W. Wu*, T. Z. Han, H. J. Chen, Y. Zhou, X. C. Li, J. Gao, and Z. Q. Sheng, “Physical mechanism of order between electric and magnetic dipoles in spoof plasmonic structure,” Optics Letters 42, 4521 (2017).
42. H. W. Wu*, H. J. Chen, H. Y. Fan, Y. Li, and X. W. Fang, “Trapped spoof surface plasmonic with structured defects in textured closed surfaces,” Optics Letters 42, 791 (2017).


