Hunt John, Tyler Talmage, Dhar Sulochana, Tsai Yu-Ju, Bowen Patrick, Larouche Stéphane, Jokerst Nan M, Smith David R
Center for Metamaterials and Integrated Plasmonics, Duke University, Durham, North Carolina 27706, USA.
Opt Express. 2012 Jan 16;20(2):1706-13. doi: 10.1364/OE.20.001706.
Employing artificially structured metamaterials provides a means of circumventing the limits of conventional optical materials. Here, we use transformation optics (TO) combined with nanolithography to produce a planar Luneburg lens with a flat focal surface that operates at telecommunication wavelengths. Whereas previous infrared TO devices have been transformations of free-space, here we implement a transformation of an existing optical element to create a new device with the same optical characteristics but a user-defined geometry.
使用人工构造的超材料提供了一种规避传统光学材料限制的方法。在此,我们将变换光学(TO)与纳米光刻相结合,以制造出一种平面 Luneburg 透镜,其具有在电信波长下工作的平坦焦面。以往的红外 TO 器件是自由空间的变换,而在此我们对现有光学元件进行变换,以创建一个具有相同光学特性但几何形状可用户定义的新器件。