Xu Zongcheng, Li Yujie, Han Bin, Wang Yue, Yuan Quan, Li Yanan, He Weiyan, Hao Junhua, Wu Liang, Yao Jianquan
Department of Physics, Tianjin Renai College, Tianjin 301636, China.
Key Laboratory of Opto-Electronics Information Science and Technology, Ministry of Education, Institute of Laser and Opto-Electronics, Tianjin University, Tianjin 300072, China.
Materials (Basel). 2024 Apr 29;17(9):2098. doi: 10.3390/ma17092098.
All-silicon terahertz absorbers have attracted considerable interest. We present a design and numerical study of an all-silicon polarization-insensitive terahertz metamaterial absorber. The meta-atoms of the metamaterial absorber are square silicon rings which can be viewed as gratings. By properly optimizing the structure of the meta-atom, we achieve a broadband absorptivity that is above 90% ranging from 0.77 THz to 2.53 THz, with a relative bandwidth of 106.7%. Impedance matching reduces the reflection of the terahertz waves and the (0, ±1)-order diffraction induce the strong absorption. The absorption of this absorber is insensitive to the polarization of the terahertz wave and has a large incident angle tolerance of up to 60 degrees. The all-silicon metamaterial absorber proposed here provides an effective way to obtain broadband absorption in the terahertz regime. Metamaterial absorbers have outstanding applications in terahertz communication and imaging.
全硅太赫兹吸收器引起了广泛关注。我们展示了一种全硅偏振不敏感太赫兹超材料吸收器的设计与数值研究。该超材料吸收器的元原子是方形硅环,可视为光栅。通过适当优化元原子的结构,我们实现了从0.77太赫兹到2.53太赫兹范围内高于90%的宽带吸收率,相对带宽为106.7%。阻抗匹配减少了太赫兹波的反射,(0, ±1)级衍射导致了强吸收。这种吸收器的吸收对太赫兹波的偏振不敏感,并且具有高达60度的大入射角容忍度。这里提出的全硅超材料吸收器为在太赫兹波段获得宽带吸收提供了一种有效方法。超材料吸收器在太赫兹通信和成像方面有出色的应用。