A repository & source of cutting edge news about emerging terahertz technology, it's commercialization & innovations in THz devices, quality & process control, medical diagnostics, security, astronomy, communications, applications in graphene, metamaterials, CMOS, compressive sensing, 3d printing, and the Internet of Nanothings. NOTHING POSTED IS INVESTMENT ADVICE! REPOSTED COPYRIGHT IS FOR EDUCATIONAL USE.
Showing posts with label Nicholas J. Karl. Show all posts
Showing posts with label Nicholas J. Karl. Show all posts
Sunday, October 1, 2017
Abstract-Frequency-division multiplexer and demultiplexer for terahertz wireless links
https://www.nature.com/articles/s41467-017-00877-x
The development of components for terahertz wireless communications networks has become an active and growing research field. However, in most cases these components have been studied using a continuous or broadband-pulsed terahertz source, not using a modulated data stream. This limitation may mask important aspects of the performance of the device in a realistic system configuration. We report the characterization of one such device, a frequency multiplexer, using modulated data at rates up to 10 gigabits per second. We also demonstrate simultaneous error-free transmission of two signals at different carrier frequencies, with an aggregate data rate of 50 gigabits per second. We observe that the far-field spatial variation of the bit error rate is different from that of the emitted power, due to a small nonuniformity in the angular detection sensitivity. This is likely to be a common feature of any terahertz communication system in which signals propagate as diffracting beams not omnidirectional broadcasts.
Tuesday, August 16, 2016
Abstract-Waveguide Devices for Terahertz Signal Processing
Kimberly S. Reichel, Robert McKinney, Yasuaki Monnai, Nicholas J. Karl, Rajind Mendis, and Daniel M. Mittleman
https://www.osapublishing.org/abstract.cfm?uri=LAOP-2016-LW2B.1
https://www.osapublishing.org/abstract.cfm?uri=LAOP-2016-LW2B.1
We introduce two waveguide based devices for signal processing in future terahertz wireless communications systems: a leaky-wave antenna for frequency multiplexing and a Tjunction waveguide for broadband power splitting.
© 2016 OSA
PDF Article
Monday, September 14, 2015
Abstract-Frequency-division multiplexing in the terahertz range using a leaky-wave antenna
- Nature Photonics
- doi:10.1038/nphoton.2015.176
- Received
- Accepted
- Published online
-
The idea of using radiation in the 0.1–1.0 THz range as carrier waves for free-space wireless communications has attracted growing interest in recent years, due to the promise of the large available bandwidth1, 2. Recent research has focused on system demonstrations3, 4, as well as the exploration of new components for modulation5, beam steering6 and polarization control7. However, the multiplexing and demultiplexing of terahertz signals remains an unaddressed challenge, despite the importance of such capabilities for broadband networks. Using a leaky-wave antenna based on a metal parallel-plate waveguide, we demonstrate frequency-division multiplexing and demultiplexing over more than one octave of bandwidth. We show that this device architecture offers a unique method for controlling the spectrum allocation, by variation of the waveguide plate separation. This strategy, which is distinct from those previously employed in either the microwave8 or optical9regimes, enables independent control of both the centre frequency and bandwidth of multiplexed terahertz channels.
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