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THz Wireless Transmission Systems Based on Photonic Generation of Highly Pure Beat-Notes
THz Wireless Transmission Systems Based on Photonic Generation of Highly Pure Beat-Notes
- Source :
- IEEE Photonics Journal, Vol 8, Iss 5, Pp 1-8 (2016), Jia, S, Yu, X, Hu, H, Yu, J, Morioka, T, Jepsen, P U & Oxenløwe, L K 2016, ' THz Wireless Transmission Systems Based on Photonic Generation of Highly Pure Beat-Notes ', I E E E Photonics Journal, vol. 8, no. 5, 7905808 . https://doi.org/10.1109/JPHOT.2016.2600345
- Publication Year :
- 2016
- Publisher :
- IEEE, 2016.
-
Abstract
- In this paper, a terahertz (THz) wireless communication system at 400 GHz with various modulation formats [on-off keying (OOK), quadrature phase-shift keying (QPSK), 16-quadrature amplitude modulation (16-QAM), and 32-quadrature amplitude modulation (32-QAM)] is experimentally demonstrated based on photonic generation of highly pure THz carriers. The experimental THz wireless photonic transmission system is enabled by the ultrawideband behavior of an antenna-integrated unitraveling-carrier-photodiode-based transmitter and a Schottky mixer-based THz receiver. In the experiment, a phase-correlated optical frequency comb (OFC) is created for photomixing generation of the desired THz carrier frequencies with low phase noise. The OFC allows for the generation of flexibly tunable THz carrier frequencies. The performance of the generated THz carriers is experimentally characterized in terms of phase noise, spectrum purity, tunability, and long-term stability. In the case of generating 400 GHz carrier, the measured timing jitter, linewidth, and long-term stability in the experiment are 51.5 fs, less than 2 Hz, and less than ±1 Hz with 3 hours, respectively. We also theoretically analyze the phase noise of photonically generated THz beat-notes when phase correlation of two optical comb tones is damaged due to their path-length difference. In addition, we demonstrate THz wireless transmission of various modulation formats, including OOK, QPSK, 16-QAM, and 32-QAM at beyond 10 Gb/s in such a system, and the measured bit error rate (BER) performance for all the signals after 0.5 m free-space delivery is below the hard decision forward error correction threshold of 3.8 × 10-3. Furthermore, the influence of THz carrier purity on the system performance is experimentally analyzed with respect to the BER of the THz communication signals.
- Subjects :
- lcsh:Applied optics. Photonics
path-length difference
quadrature phase shift keying
free-space delivery
modulation formats
02 engineering and technology
Free-space optical links
optical comb tones
Optical communication equipment
Codes
quadrature amplitude modulation
phase correlation
Photomixing
highly pure beat-notes
Optical transmitters
020210 optoelectronics & photonics
photodiodes
0202 electrical engineering, electronic engineering, information engineering
lcsh:QC350-467
linewidth
quadrature phase-shift keying
integrated optoelectronics
16-QAM
Physics
unitraveling carrier photodiode (UTC-PD)
32-quadrature amplitude modulation
Modulation and coding methods
Optical communication devices, equipment and systems
On-off keying
long-term stability
Photoelectric devices
32-QAM
bit error rate
Atomic and Molecular Physics, and Optics
phase noise
amplitude shift keying
integrated optics
QPSK
error statistics
Quadrature amplitude modulation
lcsh:Optics. Light
Phase-shift keying
THz wireless communication
THz photonics
Wireless communication
THz wireless transmission systems
terahertz wireless communication system
photomixing
Amplitude modulation
time 51.5 fs
Optics
THz carriers
Frequency measurement
Phase noise
free-space optical communication
16-quadrature amplitude modulation
Electrical and Electronic Engineering
Optical modulation
BER
photonic generation
business.industry
forward error correction
OOK
Stability analysis
lcsh:TA1501-1820
on-off keying
frequency 400 GHz
Amplitude-shift keying
spectrum purity
Photonics
optical frequency comb (OFC)
timing jitter
distance 0.5 m
tunability
business
Subjects
Details
- Language :
- English
- ISSN :
- 19430655
- Volume :
- 8
- Issue :
- 5
- Database :
- OpenAIRE
- Journal :
- IEEE Photonics Journal
- Accession number :
- edsair.doi.dedup.....eb07ca93ddbbbb22e74fa514e25a3e7a
- Full Text :
- https://doi.org/10.1109/JPHOT.2016.2600345