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Imaging Rule of Diffractive Ultrathin Flat Lens

机译:衍射超晶透镜的成像规则

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With the development of nanophotonics, a number of diffractive optical lenses are designed and demonstrated experimentally, such as metasurfaces and metalens. This study demonstrates derivation the imaging rule of diffractive optical lens based on geometric optics, which treat light as rays without considering the diffraction. The derived imaging rule is theoretically verified by the Rayleigh-Sommerfeld (RS) diffraction theory to simulate the imaging performance a graphene oxide (GO) ultrathin (~200 nm) flat lens working at the wavelength of 600 nm. The results from diffraction theory based on RS model confirms the imaging rule derived from the geometric optics in the paraxial region. The imaging rule can be generally applied to any diffractive lenses, especially ultrathin flat lenses.
机译:随着纳米光源的发展,实验设计和展示了许多衍射光学镜片,例如元件和金属。该研究表明了基于几何光学器件的衍射光学透镜的成像规则,其在不考虑衍射的情况下将光作为光线视为光线。通过Rayleigh-Sommerfeld(RS)衍射理论理论上验证了衍生的成像规则,以模拟成像性能的石墨烯(GO)超薄(〜200nm)扁平透镜在600nm的波长下工作。基于RS模型的衍射理论的结果证实了从横周区域中的几何光学衍生的成像规则。成像规则通常可以应用于任何衍射透镜,特别是超薄扁平透镜。

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