Out-of-Plane Reflection and Refraction of Light by Anisotropic Optical Antenna Metasurfaces with Phase Discontinuities
Внеплоскостное отражение и преломление света анизотропными оптическими антенными метаповерхностями с фазовыми разрывами
2012-02-15
SCID: 54.1/ns83zpsz
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anisotropic optical antenna metasurfacesgeneralized laws of refraction and reflectionout-of-plane refractionphase discontinuitiestangential wavevector imparted by interface
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Abstract (AI)
Experiments on ultrathin anisotropic arrays of subwavelength optical antennas display out-of-plane refraction. A powerful three-dimensional (3D) extension of the recently demonstrated generalized laws of refraction and reflection shows that the interface imparts a tangential wavevector to the incident light leading to anomalous beams, which in general are noncoplanar with the incident beam. The refracted beam direction can be controlled by varying the angle between the plane of incidence and the antenna array.
Key Findings
1
A three-dimensional extension of generalized laws of refraction and reflection explains that interfaces with phase discontinuities impart a tangential wavevector to incident light.
2
The imparted tangential wavevector generates anomalous beams that are generally noncoplanar with the incident beam.
3
The refracted beam direction can be controlled by changing the angle between the plane of incidence and the antenna array.
4
Ultrathin anisotropic arrays of subwavelength optical antennas produce out-of-plane refraction of light.
Research Object
Ultrathin anisotropic arrays of subwavelength optical antennas (optical antenna metasurfaces)
Research Subject
Out-of-plane reflection and refraction behavior induced by phase discontinuities—specifically imparting a tangential wavevector that produces anomalous, noncoplanar refracted beams and control of refracted beam direction via the angle between plane of incidence and the antenna array
Publication Details
Publication Date
2012-02-15
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