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2019
Conference Paper
Title

Wireless terahertz communications

Abstract
Over the past years, interest in wireless THz communications with so-called T-waves has tremendously increased [1]-[4], because the large carrier frequencies in the range 0.2 THz to 0.9 THz support wide signal band-widths and consequently large data rates. Transmission over hundreds of meters and line rates exceeding 100 Gbit/s were demonstrated [5]-[10]. Typical atmospheric losses are 0.2 dB/100 m at 0.2 THz, 0.5 dB/100 m at 0.3 THz, 1.5 dB/100 m at 0.4 THz, and 5 dB/100 m at 0.9 THz. For transmission over a 100 m-distance, however, the unity-gain free-space propagation loss a L=100m dB = 10lg(4pL/l) 2 = 120dB (l = 1mm, f = 0.3THz) dominates. To combat this propagation loss, multiple directional antennas with a high gain per sector can be employed at the base station to boost the reach and the data throughput on transmission and reception.
Author(s)
Freude, W.
Harter, T.
Ummethala, S.
Muehlbrandt, S.
Blaicher, M.
Wolf, S.
Weber, M.
Boes, F.
Massler, H.
Tessmann, A.
Kutuvantavida, Y.
Kemal, J.N.
Nellen, S.
Hahn, L.
Globisch, B.
Walther, M.
Zwick, T.
Randel, S.
Koos, C.
Mainwork
Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference, CLEO/Europe-EQEC 2019  
Conference
Conference on Lasers and Electro-Optics Europe (CLEO Europe) 2019  
European Quantum Electronics Conference (EQEC) 2019  
Open Access
DOI
10.1109/CLEOE-EQEC.2019.8873098
Additional link
Full text
Language
English
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
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