A 600 GHz data transmission using the combination of a photonic emission using a uni-travelling carrier photodiode and an electronic detection is investigated. A high-definition television transmission at this carrier frequency with a very low power at the receiver is reported. Only 10 nW of terahertz (THz) power at 600 GHz was sufficient to ensure a successful high-definition video transmission. This combination of photonics at emission and heterodyne detection lead to achieving THz wireless links with a safe level of electromagnetic exposure
This paper analyzes integrated components for ultra-broadband millimeter-wave wireless transmitters ...
An optoelectronic terahertz (THz) receiver for heterodyne detection of THz signals as low as 3 μW is...
We show coherent wireless transmission at carrier frequencies of 0.25 THz and 0.35 THz, relying excl...
Free space communications with huge data capacity have become a key point for the development of mob...
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 article presents the experimental demonstration of a fully photonics-based heterodyne subterahe...
We report the first successful terahertz het- erodyne communication using a field-effect transistor ...
To accommodate the ever increasing wireless traffic in the access networks, considerable efforts hav...
We experimentally demonstrate a heterodyne communication link using a p-i-n photodiode and a photoco...
THz communications systems at carrier frequencies above 200 GHz are the key to enable next-generatio...
Optoelectronic technology is expected to be the cornerstone of sub-THz communication systems, enabli...
High carrier frequencies in the terahertz range 0.1...30 THz are required for wireless data transmis...
An optoelectronic InGaAs-based terahertz (THz) receiver for heterodyne detection up to 1 THz is demo...
Within the last decade, photoconductive terahertz (THz) systems have become well-established tools i...
This paper analyzes integrated components for ultra-broadband millimeter-wave wireless transmitters ...
An optoelectronic terahertz (THz) receiver for heterodyne detection of THz signals as low as 3 μW is...
We show coherent wireless transmission at carrier frequencies of 0.25 THz and 0.35 THz, relying excl...
Free space communications with huge data capacity have become a key point for the development of mob...
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 article presents the experimental demonstration of a fully photonics-based heterodyne subterahe...
We report the first successful terahertz het- erodyne communication using a field-effect transistor ...
To accommodate the ever increasing wireless traffic in the access networks, considerable efforts hav...
We experimentally demonstrate a heterodyne communication link using a p-i-n photodiode and a photoco...
THz communications systems at carrier frequencies above 200 GHz are the key to enable next-generatio...
Optoelectronic technology is expected to be the cornerstone of sub-THz communication systems, enabli...
High carrier frequencies in the terahertz range 0.1...30 THz are required for wireless data transmis...
An optoelectronic InGaAs-based terahertz (THz) receiver for heterodyne detection up to 1 THz is demo...
Within the last decade, photoconductive terahertz (THz) systems have become well-established tools i...
This paper analyzes integrated components for ultra-broadband millimeter-wave wireless transmitters ...
An optoelectronic terahertz (THz) receiver for heterodyne detection of THz signals as low as 3 μW is...
We show coherent wireless transmission at carrier frequencies of 0.25 THz and 0.35 THz, relying excl...