Cite this article:
Xu De-Gang, Wang Yu-Ye, Yu Hong, Li Jia-Qi, Li Zhong-Xiao, Yan Chao, Zhang Hao, Liu Peng-Xiang, Zhong Kai, Wang Wei-Peng, Yao Jian-Quan. Low-loss terahertz waveguide with InAs-graphene-SiC structureJ. Chin. Phys. B, 2014, 23(5): 054210.
| Xu De-Gang, Wang Yu-Ye, Yu Hong, Li Jia-Qi, Li Zhong-Xiao, Yan Chao, Zhang Hao, Liu Peng-Xiang, Zhong Kai, Wang Wei-Peng, Yao Jian-Quan. Low-loss terahertz waveguide with InAs-graphene-SiC structureJ. Chin. Phys. B, 2014, 23(5): 054210. |
Low-loss terahertz waveguide with InAs-graphene-SiC structure
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Abstract
We demonstrate a low-loss terahertz waveguide based on the InAs-graphene-SiC structure. By analyzing the terahertz waveguide proposed in this paper, we can obtain that it is the characteristic of a low transmission loss coefficient (αloss ≈ 0.55 dB/m) for fundamental mode (LP01) when the incident frequency is larger than 3.0 THz. The critical radii of the inside and outside cylinders have been found for the high-quality transmission. The large inside radius and the high transmission frequency result in a flat transmission loss coefficient curve. As a strictly two-dimensional material, the double graphene surface rings perform better to improve the quality of transmission mode. These results provide a new idea for the research of the long-distance THz waveguide. -
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