Department of Electrical and Computer Engineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92093, USA.
Nat Commun. 2012;3:1205. doi: 10.1038/ncomms2176.
The resolution of conventional optical lens systems is always hampered by the diffraction limit. Recent developments in artificial metamaterials provide new avenues to build hyperlenses and metalenses that are able to image beyond the diffraction limit. Hyperlenses project super-resolution information to the far field through a magnification mechanism, whereas metalenses not only super-resolve subwavelength details but also enable optical Fourier transforms. Recently, there have been numerous designs for hyperlenses and metalenses, bringing fresh theoretical and experimental advances, though future directions and challenges remain to be overcome.
传统光学透镜系统的分辨率始终受到衍射极限的限制。人工超材料的最新发展为制造超透镜和金属透镜提供了新途径,这些透镜能够超越衍射极限进行成像。超透镜通过放大机制将超分辨率信息投影到远场,而金属透镜不仅能够超分辨亚波长细节,还能够实现光学傅里叶变换。最近,已经有许多超透镜和金属透镜的设计方案,带来了新的理论和实验进展,尽管未来仍有方向和挑战需要克服。