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首页> 外文期刊>Scientific reports. >Broadband terahertz metamaterial absorber based on sectional asymmetric structures
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Broadband terahertz metamaterial absorber based on sectional asymmetric structures

机译:基于截面不对称结构的宽带太赫兹超材料吸收器

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We suggest and demonstrate the concept and design of sectional asymmetric structures which can manipulate the metamaterial absorber’s working bandwidth with maintaining the other inherent advantages. As an example, a broadband terahertz perfect absorber is designed to confirm its effectiveness. The absorber’s each cell integrates four sectional asymmetric rings and the entire structure composed of Au and Si3N4 is only 1.9?μm thick. The simulation results show the bandwidth with absorptivity being larger than 90% is extended by about 2.8 times comparing with the conventional square ring absorber. The composable small cell, ultra-thin and broadband absorption with polarization and incident angle insensitivity will make the absorber suitable for the applications of focal plane array terahertz imaging.
机译:我们建议并展示了截面不对称结构的概念和设计,可以通过保持其他固有的优点来操纵超材料吸收器的工作带宽。例如,宽带太赫兹完美吸收器旨在确认其有效性。吸收器的每个电池整合了四个截面不对称环,并且由Au和Si3n4组成的整个结构仅为1.9?μm厚。与传统方环吸收器相比,仿真结果显示出大于90%的吸收率大于90%的带宽。可组合的小型电池,超薄和宽带吸收极化和入射角不敏感性将使吸收器适用于焦平面阵列太赫兹成像的应用。

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