Journal of Infrared and Millimeter Waves, Volume. 42, Issue 6, 755(2023)
Faraday rotation in nitrogen-doped diamond measured by polarized terahertz time-domain spectroscopy in the presence of strong magnetic field
Nitrogen (N)-doped diamond (N-D) is one of the most important carbon-based electronic materials and has many interesting and unique features in terms of physics owing to the presence of N related color centers. In this paper, the terahertz (THz) magneto-optical (MO) properties of N-D grown by microwave plasma chemical vapor deposition (MPCVD) are investigated. By using polarized THz time-domain spectroscopy (TDS) in the presence of magnetic field from 0 to 8 T, the THz transmission through an N-D sample in Faraday geometry is measured at 80 K. The dependence of the Faraday rotation angle and ellipticity, the complex transverse or Hall MO conductivity and the complex dielectric constant upon the magnetic field for N-D are examined. The results show that N-D has excellent THz MO Faraday rotation effect and can be applied as THz rotatory material.
Get Citation
Copy Citation Text
Huan XIAO, Hua WEN, Wen XU, Jing ZHANG, Xing-Jia CHENG, Yi-Ming XIAO, Lan DING, Hao-Wen LI, Yan-Zhe CHENG, Bin HE. Faraday rotation in nitrogen-doped diamond measured by polarized terahertz time-domain spectroscopy in the presence of strong magnetic field[J]. Journal of Infrared and Millimeter Waves, 2023, 42(6): 755
Category: Research Articles
Received: Jan. 12, 2023
Accepted: --
Published Online: Dec. 26, 2023
The Author Email: Wen XU (wenxu_issp@aliyun.com), Yi-Ming XIAO (yiming.xiao@ynu.edu.cn)