非周期图
光学
光子
随机性
全息术
衍射
极化(电化学)
筛子(范畴论)
材料科学
光电子学
物理
化学
数学
统计
组合数学
物理化学
作者
Kun Huang,Hong Liu,F. J. García‐Vidal,Minghui Hong,Boris Luk’yanchuk,Jinghua Teng,Cheng‐Wei Qiu
摘要
Miniaturization of optical structures makes it possible to control light at the nanoscale, but on the other hand it imposes a challenge of accurately handling numerous unit elements in a miniaturized device with aperiodic and random arrangements. Here, we report both the new analytical model and experimental demonstration of the photon sieves with ultrahigh-capacity of subwavelength holes (over 34 thousands) arranged in two different structural orders of randomness and aperiodicity. The random photon sieve produces a uniform optical hologram with high diffraction efficiency and free from twin images that are usually seen in conventional holography, while the aperiodic photon sieve manifests sub-diffraction-limit focusing in air. A hybrid approach is developed to make the design of random and aperiodic photon sieve viable for high-accuracy control of the amplitude, phase and polarization of visible light. The polarization independence of the photon sieve will also greatly benefit its applications in optical imaging and spectroscopy. Miniaturization of optical structures allows light control in the nanoscale, but handling a large-scale device with aperiodic and random nanostructures is challenging. Here, Huang et al.design and fabricate a non-periodic photon sieve with control over amplitude, phase and polarization in visible light.
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