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A dynamically tunable and wide-angle terahertz absorber based on graphene-dielectric grating

机译:基于石墨烯 - 介电光栅的动态可调谐和广角太角间吸收器

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摘要

We theoretically and numerically demonstrate a tunable and wide-angle terahertz absorber, which is composed of multilayer graphene-dielectric grating and bottom metal substrate. Numerical simulation shows that the proposed absorber has the advantage of dynamically tunable range from 1.015 THz to 1.165 THz when the chemical potential of graphene increases from 10 meV to 150 meV. The absorption efficiency can reach a high value of 99%. To show the working mechanism of absorption, the near field distributions of magnetic components are presented at the absorption wavelength. We also demonstrate that the tunable range of absorption can be engineered by designing the geometry parameters. In addition, it is shown that the designed absorber can maintain the good performance of absorption over a wide incident angle from 0 degrees to 60 degrees under TM-polarization.
机译:我们理论上和数值上展示了可调谐和广角太赫兹吸收器,其由多层石墨烯 - 介电光栅和底部金属基板组成。 数值模拟表明,当石墨烯的化学潜力从10MeV增加到150 meV时,所提出的吸收器具有从1.015THz到1.165 THz的动态调谐范围的优点。 吸收效率达到高值99%。 为了显示吸收的工作机制,磁性部件的近场分布在吸收波长处呈现。 我们还证明可以通过设计几何参数来设计可调谐的吸收范围。 另外,示出设计的吸收器可以在TM极化下在0度到60度的宽入射角保持吸收的良好性能。

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