Wireless sub-THz communication system with high data rate View Full Text


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Article Info

DATE

2013-12

AUTHORS

S. Koenig, D. Lopez-Diaz, J. Antes, F. Boes, R. Henneberger, A. Leuther, A. Tessmann, R. Schmogrow, D. Hillerkuss, R. Palmer, T. Zwick, C. Koos, W. Freude, O. Ambacher, J. Leuthold, I. Kallfass

ABSTRACT

In communications, the frequency range 0.1–30 THz is essentially terra incognita. Recently, research has focused on this terahertz gap, because the high carrier frequencies promise unprecedented channel capacities1. Indeed, data rates of 100 Gbit s−1 were predicted2 for 2015. Here, we present, for the first time, a single-input and single-output wireless communication system at 237.5 GHz for transmitting data over 20 m at a data rate of 100 Gbit s−1. This breakthrough results from combining terahertz photonics and electronics, whereby a narrow-band terahertz carrier is photonically generated by mixing comb lines of a mode-locked laser in a uni-travelling-carrier photodiode. The uni-travelling-carrier photodiode output is then radiated over a beam-focusing antenna. The signal is received by a millimetre-wave monolithic integrated circuit comprising novel terahertz mixers and amplifiers. We believe that this approach provides a path to scale wireless communications to Tbit s−1 rates over distances of >1 km. More... »

PAGES

977-981

References to SciGraph publications

  • 2007-02. Cutting-edge terahertz technology in NATURE PHOTONICS
  • 2011-02. A Review on Terahertz Communications Research in JOURNAL OF INFRARED, MILLIMETER, AND TERAHERTZ WAVES
  • 2013-02. Radiofrequency signal-generation system with over seven octaves of continuous tuning in NATURE PHOTONICS
  • Identifiers

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    http://scigraph.springernature.com/pub.10.1038/nphoton.2013.275

    DOI

    http://dx.doi.org/10.1038/nphoton.2013.275

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