Tunable metasurfaces (Presentation Recording)

H. Atwater
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Abstract

Metasurfaces composed of sub-wavelength artificial structures show promise for extraordinary light-manipulation and development of ultrathin optical components such as lenses, wave plates, orbital angular detection, and holograms over a broad range of the electromagnetic spectrum. However structures developed to date do not allow for post-fabrication control of antenna properties. We have investigated the integration of the transparent conductor indium tin oxide (ITO) active elements to realize gate-tunable phased arrays of subwavelength patch antenna in a metasurface configuration to enable gate tunable permittivity. The magnetic dipole resonance of each patch antenna interacts with the carrier density-dependent permittivity resonance of the ITO to enable phase and amplitude tunability. Operation of patch antennas and beam steering phased arrays will be discussed.
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可调的元表面(演示记录)
由亚波长人工结构组成的超表面显示出非凡的光操纵和超薄光学元件的发展前景,如透镜、波片、轨道角探测和广泛电磁波谱范围内的全息图。然而,迄今为止开发的结构不允许对天线特性进行后期控制。我们研究了透明导体氧化铟锡(ITO)有源元件的集成,以实现亚波长贴片天线在超表面结构中的门可调谐相控阵,从而实现门可调谐介电常数。每个贴片天线的磁偶极子共振与ITO的载流子密度相关的介电常数共振相互作用,以实现相位和幅度可调性。讨论了贴片天线和波束导向相控阵的工作原理。
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