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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Flat Optics: Controlling Wavefronts With Optical Antenna Metasurfaces
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Flat Optics: Controlling Wavefronts With Optical Antenna Metasurfaces

机译:平面光学:使用光学天线超表面控制波前

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摘要

Conventional optical components rely on the propagation effect to control the phase and polarization of light beams. One can instead exploit abrupt phase and polarization changes associated with scattered light from optical resonators to control light propagation. In this paper, we discuss the optical responses of anisotropic plasmonic antennas and a new class of planar optical components (“metasurfaces”) based on arrays of these antennas. To demonstrate the versatility of metasurfaces, we show the design and experimental realization of a number of flat optical components: 1) metasurfaces with a constant interfacial phase gradient that deflect light into arbitrary directions; 2) metasurfaces with anisotropic optical responses that create light beams of arbitrary polarization over a wide wavelength range; 3) planar lenses and axicons that generate spherical wavefronts and nondiffracting Bessel beams, respectively; and 4) metasurfaces with spiral phase distributions that create optical vortex beams of well-defined orbital angular momentum.
机译:常规的光学组件依靠传播效应来控制光束的相位和偏振。相反,人们可以利用与来自光学谐振器的散射光相关的突变相位和偏振变化来控制光的传播。在本文中,我们讨论了各向异性等离子体天线的光学响应以及基于这些天线阵列的新型平面光学组件(“金属表面”)。为了说明超颖表面的多功能性,我们展示了许多平面光学组件的设计和实验实现:1)具有恒定界面相位梯度的超颖表面,将光偏转到任意方向; 2)具有各向异性光学响应的​​超颖表面,可在很宽的波长范围内产生任意偏振的光束; 3)分别产生球面波前和非衍射贝塞尔光束的平面透镜和轴锥; 4)具有螺旋相位分布的超表面,可产生具有明确定义的轨道角动量的光学涡旋光束。

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