Krushynska Anastasiia O, Torrent Daniel, Aragón Alejandro M, Ardito Raffaele, Bilal Osama R, Bonello Bernard, Bosia Federico, Chen Yi, Christensen Johan, Colombi Andrea, Cummer Steven A, Djafari-Rouhani Bahram, Fraternali Fernando, Galich Pavel I, Garcia Pedro David, Groby Jean-Philippe, Guenneau Sebastien, Haberman Michael R, Hussein Mahmoud I, Janbaz Shahram, Jiménez Noé, Khelif Abdelkrim, Laude Vincent, Mirzaali Mohammad J, Packo Pawel, Palermo Antonio, Pennec Yan, Picó Rubén, López María Rosendo, Rudykh Stephan, Serra-Garcia Marc, Sotomayor Torres Clivia M, Starkey Timothy A, Tournat Vincent, Wright Oliver B
Engineering and Technology Institute Groningen, University of Groningen, Groningen 9747AG, The Netherlands.
GROC-UJI, Institut de Noves Tecnologies de la Imatge, Universitat Jaume I, Castelló de la Plana 12071, Spain.
Nanophotonics. 2023 Jan 27;12(4):659-686. doi: 10.1515/nanoph-2022-0671. eCollection 2023 Feb.
This broad review summarizes recent advances and "hot" research topics in nanophononics and elastic, acoustic, and mechanical metamaterials based on results presented by the authors at the EUROMECH 610 Colloquium held on April 25-27, 2022 in Benicássim, Spain. The key goal of the colloquium was to highlight important developments in these areas, particularly new results that emerged during the last two years. This work thus presents a "snapshot" of the state-of-the-art of different nanophononics- and metamaterial-related topics rather than a historical view on these subjects, in contrast to a conventional review article. The introduction of basic definitions for each topic is followed by an outline of design strategies for the media under consideration, recently developed analysis and implementation techniques, and discussions of current challenges and promising applications. This review, while not comprehensive, will be helpful especially for early-career researchers, among others, as it offers a broad view of the current state-of-the-art and highlights some unique and flourishing research in the mentioned fields, providing insight into multiple exciting research directions.
本综述基于作者在2022年4月25日至27日于西班牙贝尼卡西姆举行的EUROMECH 610研讨会上发表的成果,总结了纳米声子学以及基于弹性、声学和机械超材料的最新进展和“热门”研究主题。该研讨会的主要目标是突出这些领域的重要发展,特别是过去两年中出现的新成果。因此,与传统综述文章不同,本文呈现的是不同纳米声子学和超材料相关主题的“现状快照”,而非对这些主题的历史回顾。在对每个主题引入基本定义之后,紧接着概述了所考虑介质的设计策略、最近开发的分析和实现技术,以及对当前挑战和有前景应用的讨论。本综述虽不全面,但尤其对初入该领域的研究人员等会有所帮助,因为它提供了对当前现状的广泛视角,突出了上述领域中一些独特且蓬勃发展的研究,为多个令人兴奋的研究方向提供了见解。