中文

光子材料与超材料中非局域性路线图

介观与纳米尺度物理 2025-06-23 v2 光学

摘要

光子技术不断推动着寻找具有前所未有响应性的新型光学材料的进程。该领域的一个重要前沿是探索非局域(空间色散)材料,超越传统光学材料建模中所作的波矢无关假设。在一个端面,对于类器件、极化子和量子材料的日益关注揭示了自然发生的非局域性,凸显了预测和设计其光学响应所需更准确模型的重要性。这也对基于这些材料平台的拓扑、非互易和时变系统具有重大意义。除了自然材料之外,人工结构化材料——超材料和超表面——可以提供更强且工程化的非局域效应,这些效应源于远程相互作用或多极子效应。这一领域正在快速扩张,尚未探索的前沿领域。在超表面情况下,特别是,针对非局域性的工程化已成为设计强波矢依赖响应、增强波前控制、空间压缩、多功能器件和波基计算的强大工具。此外,非局域性及相关概念在定义光学、光子技术和波动力学中可能实现的极限方面发挥着关键作用。本路线图旨在调查非局域光子材料中最令人兴奋的发展,突出新的机遇和开放挑战,并绘制新的通路,推动这一新兴领域向新的科学发现和技术突破发展。

关键词

引用

@article{arxiv.2503.00519,
  title  = {Roadmap on Nonlocality in Photonic Materials and Metamaterials},
  author = {Francesco Monticone and N. Asger Mortensen and Antonio I. Fernández-Domínguez and Yu Luo and Xuezhi Zheng and Christos Tserkezis and Jacob B. Khurgin and Tigran V. Shahbazyan and André J. Chaves and Nuno M. R. Peres and Gino Wegner and Kurt Busch and Huatian Hu and Fabio Della Sala and Pu Zhang and Cristian Ciracì and Javier Aizpurua and Antton Babaze and Andrei G. Borisov and Xue-Wen Chen and Thomas Christensen and Wei Yan and Yi Yang and Ulrich Hohenester and Lorenz Huber and Martijn Wubs and Simone De Liberato and P. A. D. Gonçalves and F. Javier García De Abajo and Ortwin Hess and Illya Tarasenko and Joel D. Cox and Line Jelver and Eduardo J. C. Dias and Miguel Sánchez Sánchez and Dionisios Margetis and Guillermo Gómez-Santos and Tobias Stauber and Sergei Tretyakov and Constantin Simovski and Samaneh Pakniyat and J. Sebastián Gómez-Díaz and Igor V. Bondarev and Svend-Age Biehs and Alexandra Boltasseva and Vladimir M. Shalaev and Alexey V. Krasavin and Anatoly V. Zayats and Andrea Alù and Jung-Hwan Song and Mark L. Brongersma and Uriel Levy and Olivia Y. Long and Cheng Guo and Shanhui Fan and Sergey I. Bozhevolnyi and Adam Overvig and Filipa R. Prudêncio and Mário G. Silveirinha and S. Ali Hassani Gangaraj and Christos Argyropoulos and Paloma A. Huidobro and Emanuele Galiffi and Fan Yang and John B. Pendry and David A. B. Miller},
  journal= {arXiv preprint arXiv:2503.00519},
  year   = {2025}
}