This article presents the experimental demonstration of a fully photonics-based heterodyne subterahertz (sub-THz) system for wireless communications. A p-i-n photodiode is used as a broadband transmitter to upconvert the signal to the sub-THz domain and a photoconductive antenna downconverts the received wave to an intermediate frequency around 3.7 GHz. The optical signals used for photomixing are extracted from two independent optical frequency combs with different repetition rates. The optical phase locking reduces the phase noise of the sub-THz signal, greatly improving the performance of the system when phase modulation formats are transmitted. The sub-THz carrier is tuned between 80 and 320 GHz in 40-GHz steps, showing a power variatio...
Photonics might play a key role in future wireless communication systems that operate at terahertz (...
THz communications systems at carrier frequencies above 200 GHz are the key to enable next-generatio...
We show coherent wireless transmission at carrier frequencies of 0.25 THz and 0.35 THz, relying excl...
This article presents the experimental demonstration of a fully photonics-based heterodyne subterahe...
Optoelectronic technology is expected to be the cornerstone of sub-THz communication systems, enabli...
We experimentally demonstrate a heterodyne communication link using a p-i-n photodiode and a photoco...
We show coherent wireless transmission at carrier frequencies within 0.30±0.02 THz using upto 20 QPS...
International audienceWe present the first experimental demonstration of a photonic-enabled wireless...
The data rate of wireless communications systems has been increasing because of the new applications...
International audienceWith the mass development of mobile data transfers, wireless communications ha...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
Photonics might play a key role in future wireless communication systems that operate at terahertz (...
THz communications systems at carrier frequencies above 200 GHz are the key to enable next-generatio...
We show coherent wireless transmission at carrier frequencies of 0.25 THz and 0.35 THz, relying excl...
This article presents the experimental demonstration of a fully photonics-based heterodyne subterahe...
Optoelectronic technology is expected to be the cornerstone of sub-THz communication systems, enabli...
We experimentally demonstrate a heterodyne communication link using a p-i-n photodiode and a photoco...
We show coherent wireless transmission at carrier frequencies within 0.30±0.02 THz using upto 20 QPS...
International audienceWe present the first experimental demonstration of a photonic-enabled wireless...
The data rate of wireless communications systems has been increasing because of the new applications...
International audienceWith the mass development of mobile data transfers, wireless communications ha...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
Photonics might play a key role in future wireless communication systems that operate at terahertz (...
THz communications systems at carrier frequencies above 200 GHz are the key to enable next-generatio...
We show coherent wireless transmission at carrier frequencies of 0.25 THz and 0.35 THz, relying excl...