NSF Nanoscale Science and Engineering Center (NSEC), University of California, 3112 Etcheverry Hall, Berkeley, CA 94720, USA.
Chem Soc Rev. 2011 May;40(5):2494-507. doi: 10.1039/c0cs00184h. Epub 2011 Jan 14.
Metamaterials, artificial composite structures with exotic material properties, have emerged as a new frontier of science involving physics, material science, engineering and chemistry. This critical review focuses on the fundamentals, recent progresses and future directions in the research of electromagnetic metamaterials. An introduction to metamaterials followed by a detailed elaboration on how to design unprecedented electromagnetic properties of metamaterials is presented. A number of intriguing phenomena and applications associated with metamaterials are discussed, including negative refraction, sub-diffraction-limited imaging, strong optical activities in chiral metamaterials, interaction of meta-atoms and transformation optics. Finally, we offer an outlook on future directions of metamaterials research including but not limited to three-dimensional optical metamaterials, nonlinear metamaterials and "quantum" perspectives of metamaterials (142 references).
超材料,具有奇异材料性质的人工复合结构,已成为一个涉及物理、材料科学、工程和化学的科学新前沿。这篇重要的综述聚焦于电磁超材料研究的基础、最新进展和未来方向。本文首先介绍了超材料,然后详细阐述了如何设计超材料前所未有的电磁特性。讨论了与超材料相关的一些有趣现象和应用,包括负折射、亚衍射极限成像、手性超材料中的强光学活性、亚波长结构的相互作用和变换光学。最后,我们对超材料研究的未来方向进行了展望,包括但不限于三维光学超材料、非线性超材料和超材料的“量子”观点(142 篇参考文献)。