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高性能双各向异性超表面:光的非对称传输

High performance bianisotropic metasurfaces: asymmetric transmission of light.

作者信息

Pfeiffer Carl, Zhang Cheng, Ray Vishva, Guo L Jay, Grbic Anthony

机构信息

Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, Michigan 48109-2122, USA.

Lurie Nanofabrication Facility, Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, Michigan 48109-2122, USA.

出版信息

Phys Rev Lett. 2014 Jul 11;113(2):023902. doi: 10.1103/PhysRevLett.113.023902. Epub 2014 Jul 10.

Abstract

It is experimentally shown that bianisotropic metasurfaces allow for extreme polarization control of light with high performance. A metasurface providing asymmetric transmission (i.e., polarization conversion) of circularly polarized light is reported at a wavelength of 1.5  μm. The experimental transmittance and extinction ratio are 50% and 20:1, which represents an order of magnitude improvement over previous optical structures exhibiting asymmetric transmission. The metasurface consists of patterned gold sheets that are spaced at a subwavelength distance from each other. The same design and fabrication processes can be used in the future to completely control the phase, amplitude, and polarization of light.

摘要

实验表明,双各向异性超表面能够以高性能实现对光的极端偏振控制。据报道,一种超表面在波长为1.5μm时可实现圆偏振光的非对称透射(即偏振转换)。实验测得的透射率和消光比分别为50%和20:1,相较于之前展示非对称透射的光学结构,性能提升了一个数量级。该超表面由相互间隔亚波长距离的图案化金片组成。未来可采用相同的设计和制造工艺来完全控制光的相位、幅度和偏振。

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