教师个人主页

王旭

  • 教授
  • 教师英文名称: Xu WANG
  • 教师拼音名称: wangxu
  • 学历: 博士研究生毕业
  • 学位: 博士学位
  • 毕业院校: 香港理工大学
  • 学科:物理学

访问量:0000019036

开通时间:..

最后更新时间:..

个人简介

王旭,同济大学声学研究所教授,博士生导师。2006年和2009年分别获得南京大学声学本科和硕士学位,2012年获得香港理工大学声学博士学位。上海市青年拔尖人才,上海市声学学会理事,中国声学学会环境声学分会委员,中国环境科学学会环境物理分会委员。担任Nature Communications, JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, BUILDING AND ENVIROMENT 等10多个国际期刊审稿人。

 

研究方向:复杂环境下的城市噪声控制。研究成果:针对新时期城市发展对环境噪声控制所提出的挑战,发展了基于通透型超构表面的环境噪声控制关键技术,突破了现有隔声手段阻碍空气流通的局限,实现了兼具高效通风和宽带降噪的超构声学屏障,填补了流通环境下环境噪声控制这一技术空白,解决了城市绿色建筑自然通风下的噪声屏蔽难题。相关成果包括Phys. Rev. Letts, Sci Bull 等高水平论文40余篇, 研究成果受到了国际媒体Ars Technica,国内东方卫视、上海科技报等多家媒体的报道;研究成果获得了2023中国新锐科技人物卓越影响奖;第三届“海聚英才”全球创新创业大赛优胜奖;2022同济大学十大最具转化潜力成果奖。


招收声学/物理学方向硕士/博士研究生,有兴趣者欢迎联系:xuwang@tongji.edu.cn 


部分代表论文:


Xiao Y., Chen J., Wang N., Wang X.*, Li Y.* Evolution of pairwise scattering exceptional points via acoustic metasurfaces. Science China: Physics, Mechanics and Astronomy, 69 (1), 14311 (2026).


Chen J.#, Zhou Z.#, Xiao Y., Wang N., Wang X.*, Li Y.* Observation of Hybrid Degenerate Point in Projected Non-Hermitian Metasurfaces. Physical Review Letters, 135 (11), 116601 (2025).


Dong R.#, Zhu Y.#, Mao D., Wang X.*, Li Y.* Observation of Extreme Anisotropic Sensitivity at Topological Bound States in the Continuum. Physical Review Letters, 134 (20), 206601 (2025).


Ge C.#, Wang N.#, Wang X.*, Li Y.* Causal-Constraint Broadband Sound Absorption under Isothermal Process. Physical Review Letters, 134 (23), 237001 (2025).


Wang Q.#, Liu C.#, Song C., Ding H., Wang X.*, Li Y.* Chirality-protected extreme asymmetric acoustic information transport with noise immunity. Nature Communications , 16 (1), 8066 (2025) .


Dong R.#, Zhu Y.#, Mao D., Wang X.*, Li Y.* Topological non-reciprocal robust waveguide transport.

 Science China: Physics, Mechanics and Astronomy, 67 (5), 254311 (2024).


Zhou Z.*, Jia B.*, Wang N., Wang X.*, Li Y.* Observation of Perfectly-Chiral Exceptional Point via Bound State in the Continuum.  Physical Review Letters, 130 (11), 116101 (2023).


Wang X.#, Dong R.#, Li Y.*, Jing Y.* Non-local and non-Hermitian acoustic metasurfaces. Reports on Progress in Physics, 86 (11), 116501 (2023).


Fang X., Wang N., Wu W., Wang W., Yin X., Wang X.*, Li Y.* Extreme Wave Manipulation via Non-Hermitian Metagratings on Degenerated States. Physical Review Applied, 19 (5), 054003 (2023) .


Zhu Y.#, Dong R.#, Mao D., Wang X.*, Li Y.* Nonlocal Ventilating Metasurfaces. Physical Review Applied, 19 (1), 014067 (2023) .


Fang X., Gerard N.J.R.K., Zhou Z., Ding H., Wang N., Jia B., Deng Y., Wang X.*, Jing Y.*, Li Y.* Observation of higher-order exceptional points in a non-local acoustic metagrating. Communications Physics, 4 (1), 271 (2021) .


Dong R., Mao D., Wang X.*, Li Y.* Ultrabroadband Acoustic Ventilation Barriers via Hybrid-Functional Metasurfaces. Physical Review Applied, 15 (2), 024044 (2021) .


Dong R., Sun M., Mo F., Mao D., Wang X.*, Li Y.* Recent advances in acoustic ventilation barriers.

 Journal of Physics D: Applied Physics, 54 (40), 403002 (2021).


Dong R., Mao D., Zhu Y., Mo F., Wang X.*, Li Y.* A ventilating acoustic barrier for attenuating broadband diffuse sound. Applied Physics Letters, 119 (26), 263505 (2021) .


Huang S., Zhou Z., Li D., Liu T., Wang X.*, Zhu J.*, Li Y.* Compact broadband acoustic sink with coherently coupled weak resonances. Science Bulletin, 65 (5), 373 - 379 (2020) .


Sun M., Fang X., Mao D., Wang X.*, Li Y.* Broadband Acoustic Ventilation Barriers. Physical Review Applied, 13 (4), 044028 (2020) .


Wang X., Fang X., Mao D., Jing Y.*, Li Y.* Extremely Asymmetrical Acoustic Metasurface Mirror at the Exceptional Point. Physical Review Letters, 123 (21), 14302 (2019) .














教育经历

暂无内容

工作经历

暂无内容

研究方向

暂无内容