Desiatov Boris, Mazurski Noa, Fainman Yeshaiahu, Levy Uriel
Opt Express. 2015 Aug 24;23(17):22611-8. doi: 10.1364/OE.23.022611.
Metasurfaces consisting of ultrathin nanostructures are utilized to control the properties of light including its phase, amplitude and polarization. Hereby, we demonstrate the capability of such structures to perform arbitrary polarization selective beam shaping using dielectric nanoscale metasurfaces implemented in silicon. By illuminating the structure with right handed circular polarization we reconstruct a desired image. When switching the polarization into its orthogonal state, we obtain the reconstruction of a different image. This demonstration shows the potential of using dielectric metasurfaces for high efficiency beam shaping applications in general, and specifically for polarization coded beam shaping.
由超薄纳米结构组成的超表面被用于控制光的特性,包括其相位、幅度和偏振。在此,我们展示了这种结构利用硅中实现的介电纳米级超表面进行任意偏振选择性光束整形的能力。通过用右旋圆偏振光照射该结构,我们重建了所需的图像。当将偏振切换到其正交状态时,我们获得了不同图像的重建。该演示总体上展示了使用介电超表面进行高效光束整形应用的潜力,特别是对于偏振编码光束整形。