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Design and simulation of reflect-array metasurfaces in the visible regime

机译:可见制度中反射阵列元件的设计与仿真

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摘要

Metasurfaces are new, promising ultrathin materials that can enable many novel optical devices due to their ability to act as a discontinuity interface that introduces an abrupt change in amplitude, phase, and sometimes the polarization of the incident light at the wavelength scale. Therefore they can function as flat optical elements. Here, we investigate the anomalous reflection of light for transverse-magnetic (TM) polarization for normal and oblique incidence in the visible regime. We propose gradient phase gap-surface plasmon metasurfaces that exhibit high conversion efficiency (up to ∼97% of total reflected light) to the anomalous reflection angle for blue, green, and red wavelengths at normal and oblique incidence, and where light polarization is unchanged after the reflection.
机译:Metasurfaces是新的,承诺的超薄材料,其可以使许多新颖的光学装置能够作为其充当不连续界面的能力,其引入幅度,相位,有时在波长级处的入射光的偏振。因此,它们可以用作平面光学元件。在这里,我们研究了可见状态下正常和倾斜入射的横向磁(TM)极化的异常反射。我们提出了梯度相位隙 - 表面等离子体化物质胶片,其表现出正常和倾斜入射处的蓝色,绿色和红色波长的异常反射角度的高转化效率(总反射光的约97%),并且光极化不变反思后。

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