Yuan Guang Hui, Rogers Edward Tf, Zheludev Nikolay I
Centre for Disruptive Photonic Technologies, The Photonic Institute, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371, Singapore.
Optoelectronics Research Centre and Centre for Photonic Metamaterials, University of Southampton, Highfield, Southampton SO17 1BJ, UK.
Light Sci Appl. 2017 Sep 8;6(9):e17036. doi: 10.1038/lsa.2017.36. eCollection 2017 Sep.
Lenses are crucial to light-enabled technologies. Conventional lenses have been perfected to achieve near-diffraction-limited resolution and minimal chromatic aberrations. However, such lenses are bulky and cannot focus light into a hotspot smaller than a half-wavelength of light. Pupil filters, initially suggested by Toraldo di Francia, can overcome the resolution constraints of conventional lenses but are not intrinsically chromatically corrected. Here we report single-element planar lenses that not only deliver sub-wavelength focusing, thus beating the diffraction limit of conventional refractive lenses, but also focus light of different colors into the same hotspot. Using the principle of super-oscillations, we designed and fabricated a range of binary dielectric and metallic lenses for visible and infrared parts of the spectrum that are manufactured on silicon wafers, silica substrates and optical fiber tips. Such low-cost, compact lenses could be useful in mobile devices, data storage, surveillance, robotics, space applications, imaging, manufacturing with light and spatially resolved nonlinear microscopies.
透镜对于光技术至关重要。传统透镜已臻完善,以实现接近衍射极限的分辨率和最小色差。然而,此类透镜体积庞大,无法将光聚焦到小于光半波长的热点区域。瞳孔滤波器最初由托拉尔多·迪·弗朗西亚提出,可克服传统透镜的分辨率限制,但本质上未进行色差校正。在此,我们报告了单元素平面透镜,其不仅能实现亚波长聚焦,从而突破传统折射透镜的衍射极限,还能将不同颜色的光聚焦到同一热点区域。利用超振荡原理,我们设计并制造了一系列用于光谱可见和红外部分的二元介电和金属透镜,这些透镜在硅晶片、二氧化硅衬底和光纤尖端上制造。此类低成本、紧凑型透镜可用于移动设备、数据存储、监控、机器人技术、太空应用、成像、光制造以及空间分辨非线性显微镜。