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Spectrally Selective Shielding Material Based on Graphene Photonic Crystal

机译:基于石墨烯光子晶体的光谱选择性屏蔽材料

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摘要

A novel graphene photonic crystal structure is proposed and designed in this paper; each unit period is composed of graphene, metal, and magnesium fluoride. We investigate the optical properties of this structure in the visible to near-infrared range by means of finite-difference time-domain method. We examined the influence of structural parameters (metal material, thickness, period number, etc.) on the optical response of the structure and found that it can be transparent in visible range and can shield most of the near-infrared rays. As a result, the proposed graphene photonic structure enables potential applications in selective near-infrared shielding material.
机译:本文提出和设计了一种新颖的石墨烯光子晶体结构; 每个单元时期由石墨烯,金属和氟化镁组成。 我们通过有限差差时域法研究了这种结构在近红外范围内的这种结构的光学性质。 我们检查了结构参数(金属材料,厚度,周期数等)对结构的光学响应的影响,发现它可以在可见范围内透明,并且可以屏蔽大部分近红外线。 结果,所提出的石墨烯光子结构使得能够在选择性近红外屏蔽材料中的潜在应用。

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