JPhysD研究路线图|2024声子晶体路线图

03 4月 2025 gabriels
Over the past 3 decades, phononic crystals experienced revolutionary development for understanding and utilizing mechanical waves by exploring interaction between mechanical waves and structures. With the significant advances in manufacture technologies from nanoscale to macroscale, phononic crystals attract researchers from diverse disciplines to study abundant directions such as bandgaps, dispersion engineering, novel modes, reconfigurable control, efficient design algorithms and so on. The aim of this roadmap is to present the current state of the art, an overview of properties, functions and applications of phononic crystals, opinions on the challenges and opportunities. The various perspectives cover wide topics on basic property, homogenization, machine learning assisted design, topological, non-Hermitian, nonreciprocal, nanoscale, chiral, nonlocal, active, spatiotemporal, hyperuniform properties of phononic crystals, and applications in underwater acoustics, seismic wave protection, vibration and noise control, thermal transport, sensing, acoustic tweezers, written by over 40 renown experts. It is also intended to guide researchers, funding agencies and industry in identifying new prospects for phononic crystals in the upcoming years.


文章介绍

The 2024 phononic crystals roadmap

Yabin Jin, Daniel Torrent, Bahram Djafari Rouhani, Liangshu He, Yanxun Xiang, Fu-Zhen Xuan, Zhongming Gu, Haoran Xue, Jie Zhu, Qian Wu, Guoliang Huang, Pedro David García, Guillermo Arregui, Yi Chen, Sébastien Guenneau, Martin Wegener, Muamer Kadic, Yongquan Liu, Jensen Li, Yue-Sheng Wang, Antonio Palermo, V Romero-García, S Kuznetsova, É Cheron, M Lázaro Navarro, J-P Groby, V Pagneux, S Félix, L M Garcia-Raffi, Gengkai Hu, Runcheng Cai, Timon Rabczuk, Xiaoying Zhuang, Penglin Gao, Yegao Qu, Mahmoud I Hussein, Masahiro Nomura, Yan Pennec, Feiyan Cai, Xinwei Li and Wei Zhai

 

通讯作者:

  • 金亚斌,华东理工大学机械与动力工程学院、上海航天控制技术研究所
  • Daniel Torrent,西班牙海梅一世大学

期刊介绍

Journal of Physics D: Applied Physics

  • 2023年影响因子:3.1  Citescore:6.8
  • Journal of Physics D: Applied Physics(JPhysD,《物理学报D:应用物理》)发表应用物理各领域的前沿研究和综述,具体包括:应用磁学和磁性材料、半导体和光子学、低温等离子体和等离子表面相互作用、凝聚态物理、表面科学和纳米结构、生物物理以及能源等六个领域。文章类型包括原创性论文、研究路线图、通讯以及每年针对热点研究的专题综述和特刊。