Study of the Absorption Properties of Terahertz Wave in the Plasma Medium

Author:

Liu Jian-Xiao12,Meng Ling-Hui1,Liu Yu-Jie2,Feng Jun-Li3,Yang Hong-Wei2

Affiliation:

1. College of Electronics and Information Engineering, Hengshui University , Hebei 053000 , PR China

2. Department of Physics , College of Science, Nanjing Agricultural University , Nanjing 210095 , PR China

3. College of Mathematics and Computer Science, Hengshui University , Hebei 053000 , PR China

Abstract

Abstract In this article, we study about the absorption properties of terahertz (THz) wave in the magnetic plasma medium. Terahertz wave has strong transmission in plasma. Generally speaking, with the increase in THz wave frequency, the transmission in plasma is stronger. Thus, we can consider raising carrier frequency to THz band to solve the communication of “blackout.” We found that the absorption in magnetic plasma is greatly affected by magnetic field. The changes on the power absorption coefficient of the two kinds of eigen wave in magnetic plasma vary with how the outside magnetic field, incident angle, and the thickness of the plasma are obtained. The study found that following the increase in magnetic field, the absorption of left circularly polarised waves (L-wave) gradually reduces, and the right circularly polarised waves (R-wave) will produce two absorption peaks, and these two absorption peaks move to high frequency as a whole. With the increase in incident angle and the high spectrum absorption of L-wave enhancement, the reflection between the two absorption peaks of R-wave broadens. The reflection area on the left side of the low-frequency area to absorb has a little change. The absorption on the right side of the high-frequency area is enhancement. With the increase in the plasma thickness, the L-wave absorption peak on the right side of the high-frequency area absorbs enhancement; the R-wave reflection between the two absorption peak areas is impregnability, the second absorption peak absorption enhancement on the right side of the high-frequency area. The study has shown the different absorption mechanisms of the L-wave and the R-wave and shown different absorption features in magnetic plasma.

Funder

Nanjing Agricultural University

Hebei Natural Science Foundation Youth

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics

Reference26 articles.

1. B. Ferguson and X. C. Zhang, Nat. Mater. 1, 26 (2003).

2. S. Li, J. Li, Z. Zhu, and W. Cui, in: 12th International Conference on Signal Processing, IEEE, Hangzhou, China 2014, p. 2398.

3. J. P. Rybak and R. J. Churchill, IEEE T. Aero. Elec. Sys. AES-7, 879 (1971).

4. Y. Li-Xia, S. Dan-Hua, and S. Wei-Dong, Acta Phys. Sin. 62, 104101 (2013).

5. Z. Xue-Jun, Y. Zhe-Feng, B. Shao-Qing, L. Sen, M. Ping, et al., Acta Aerodyn. Sin. 28, 645 (2010).

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