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High-Transmittance Subwavelength Metal Grating with Relief Structure Composed of Multiple Steps

机译:具有多级浮雕结构的高透射亚波长金属光栅

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摘要

A new kind of subwavelength metal grating with relief structure is designed and analyzed, in which the shape of the grating lines is no longer a single rectangle, but a relief structure with multiple steps. GsolverV52 was used to determine the optimal values of the grating period, groove depth, and the number of steps. The optical performance of the novel structure is evaluated and compared in terms of the transmission efficiency and extinction ratio over the visible and near-infrared wavelength spectrum. It is shown that, in the near-infrared band, the maximum transmittance can be increased about 15% compared to the traditional metal grating under the same parameters. With the unique characteristics, the metal grating is expected to find applications in liquid crystal display fields, polarization imaging, optical communication, and so on.
机译:设计并分析了一种新型的具有浮雕结构的亚波长金属光栅,光栅线的形状不再是单个矩形,而是具有多个台阶的浮雕结构。 GsolverV52用于确定光栅周期,凹槽深度和步数的最佳值。在可见光和近红外波长光谱上的透射效率和消光比方面,评估并比较了这种新型结构的光学性能。结果表明,在相同参数下,与传统金属光栅相比,在近红外波段最大透射率可提高约15%。具有独特特性的金属光栅有望在液晶显示领域,偏振成像,光通信等领域找到应用。

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