首页> 外文会议>Annual International Workshop on Materials Science and Engineering >A Metamaterial with Dual-Band Perfect Terahertz Transmission NGuochao WeiDSchool of Electronic and Electrical Engineering, Wuhan Textile University, Wuhan, 430020, P. R. China NYawei ZhengDSchool of Electronic and Electrical Engineering, Wuhan Textile University, Wuhan, 430020, P. R. China NXiran ChenDSchool of Electronic and Electrical Engineering, Wuhan Textile University, Wuhan, 430020, P. R. China
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A Metamaterial with Dual-Band Perfect Terahertz Transmission NGuochao WeiDSchool of Electronic and Electrical Engineering, Wuhan Textile University, Wuhan, 430020, P. R. China NYawei ZhengDSchool of Electronic and Electrical Engineering, Wuhan Textile University, Wuhan, 430020, P. R. China NXiran ChenDSchool of Electronic and Electrical Engineering, Wuhan Textile University, Wuhan, 430020, P. R. China

机译:国内材料与双频完美太赫兹传输N 郭豪伟业武汉纺织大学电子电气工程学院,武汉,430020,中国武汉纺织大学电子电气工程学院,武汉,430020 ,中国武汉纺织大学电子电气工程学院,武汉,武汉430020

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In recent years, the electromagnetic metamaterial has been development rapidly. Meanwhile, its peculiar electromagnetic properties have been widely studied in the fields of electromagnetism and optics. Compared to conventional natural materials, metamaterials show some unusual phenomena, for example, negative refractive index. Because of their exotic properties, metamaterials have been found with many applications, such as perfect lens, cloaking, solar cells and so on. In this paper, we report a metamaterial with dual-band perfect transmission in terahertz range. By tailoring the periodicity of the unit cell, significantly high transmission can be obtained with the metamaterial. The simulation results show that significant transmission peaks at 3.56THz and 7.16THz with the magnitudes of 99.8% and 99.7%, respectively.
机译:近年来,电磁超材料一直迅速发展。 同时,其特殊的电磁特性已广泛研究了电磁和光学领域。 与传统的天然材料相比,超材料显示出一些不寻常的现象,例如负折射率。 由于它们的异国特性,已经发现超材料,许多应用,如完美的镜头,粘附,太阳能电池等。 在本文中,我们在Terahertz系列中报道了一种具有双带完美传输的超级材料。 通过定制单元电池的周期性,通过超材料可以获得显着高的传动。 仿真结果表明,显着的传输峰值为3.56六,分别为99.8%和99.7%的大幅度。

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