Journal ArticleDOI
Link Budget Analysis for Terahertz Fixed Wireless Links
TLDR
High data rates can only be transmitted via these links if transmitter and receiver antennas with very high gains are used, and this requires an adaptive control of mechanical fluctuations.Abstract:
Due to the broad bandwidths, terahertz (THz)-waves offer the possibility for wireless transmission of high data rates. Especially, broadband wireless access over short ranges and fixed wireless links based on THz-waves are very promising. They can be incorporated as a bridge for optical networks or an alternative for the connection of wireless stations in difficult environments, to transmit next generation HDTV signals or for the broadband connection of servers in a data center, for instance. The frequency range between 300 and 900 GHz is very promising for these applications since the possible bandwidth is very high and first electronic circuits will become available on the market soon. However, contrary to wireless links in the lower GHz-bands, the free-space path-loss is quite high and the attenuation due to molecules in the air or water droplets can significantly decrease the transmittable data rates in this frequency range. Here the basic properties of THz-waves will be investigated and the maximum achievable data rates for fixed wireless THz-links will be derived. In order to keep the considerations as general as possible, the derivations are based on simple assumptions and equations. Additionally, conclusions for the applicability of THz-waves for fixed wireless links with distances up to 1 km will be given and the special requirements for these systems will be discussed. As we will show, high data rates can only be transmitted via these links if transmitter and receiver antennas with very high gains are used. This requires an adaptive control of mechanical fluctuations.read more
Citations
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Millimeter-Waves to Terahertz SISO and MIMO Continuous Variable Quantum Key Distribution
TL;DR: In this paper , secure mm-wave and terahertz quantum key distribution (QKD) can be achieved when the sources and detectors operate at cryogenic temperatures down to T = 4 K.
Proceedings ArticleDOI
340GHz High Speed Communication System Based on Solid State Transceiver
TL;DR: This paper gives a further study on the 340GHz subharmonic mixer, which plays an important role in the superheterodyne receiver, and designs a terahertz communication system with 20Gbps data rate.
Journal ArticleDOI
High dielectric constant substrate material for gain enhancement of quasi-optical Terahertz antenna
Proceedings ArticleDOI
Phase-shift keying for THz data channel
TL;DR: In this paper, the authors discuss means of making the sub-terahertz communication feasible, e.g., cryogenically cooled receivers for increasing the signal-to-noise ratio.
Efficient terahertz-range beam control using flat optics
TL;DR: Thesis (PhD) as discussed by the authors, University of Adelaide, School of Electrical and Electronic Engineering (SEE), 2017, 3.5.0.0, 0.0
References
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Ho-Jin Song,Tadao Nagatsuma +1 more
TL;DR: The current progress of terahertz-wave technologies related to communications applications are examined and some issues that need to be considered for the future of THz communications are discussed.
Journal ArticleDOI
Review of terahertz and subterahertz wireless communications
John F. Federici,Lothar Moeller +1 more
TL;DR: The goal of this paper is to provide a comprehensive review of wireless sub-THz and THz communications and report on the reported advantages and challenges of using sub-terahertz andTHz waves as a means to transmit data wirelessly.
Journal ArticleDOI
Short-Range Ultra-Broadband Terahertz Communications: Concepts and Perspectives
R. Piesiewicz,Thomas Kleine-Ostmann,N. Krumbholz,Daniel M. Mittleman,Martin Koch,Joerg Schoebel,Thomas Kurner +6 more
TL;DR: It is demonstrated that a directed NLOS path scheme will make a terahertz communication system robust to shadowing, and it is shown that dielectric mirrors covering only parts of the walls will significantly enhance the signal coverage in a typical indoor scenario.