As THz and millimetre wave technologies are further developing for a range of applications, photonics is one of the key technology for its development. We will discuss the different recent advances in photonic technologies for THz and millimetre wave. In particular we will look at integration technologies and their potential for reduced foot print and lower power consumption. We will although look at the comparative progress of electronic based solutions and discuss the future outlook of both technologies
As millimeter- and submillimeter-wave device and circuit technologies move from the laboratory into ...
Advances over the past decade have presented new avenues to achieve control over material properties...
Thanks to the abrupt advances in semiconductor technologies, particularly in terms of the operating ...
These last decades, optical telecommunications have made a spectacular success thanks to the explosi...
These last decades, optical telecommunications have made a spectacular success thanks to the explosi...
These last decades, optical telecommunications have made a spectacular success thanks to the explosi...
In the last couple of decades, terahertz (THz) technologies, which lie in the frequency gap between ...
Overview: The basic thesis for the advancement of millimetre-wave and terahertz electronics is repre...
Terahertz (THz) photonic devices are now exploiting emerging materials systems, while novel device d...
Terahertz (THz) photonic devices are now exploiting emerging materials systems, while novel device d...
Aligned with 5G vision for a fully mobile and connected society, Terahertz (THz) wireless communicat...
Almost 15 years have passed since the initial demonstrations of terahertz (THz) wireless communicati...
For the 2nd Towards THz Communications Workshop held on 7th March 2019 at the Albert Borschette Cong...
The THz spectral range is yet not fully exploited to its full potential due to the current limitatio...
As millimeter- and submillimeter-wave device and circuit technologies move from the laboratory into ...
As millimeter- and submillimeter-wave device and circuit technologies move from the laboratory into ...
Advances over the past decade have presented new avenues to achieve control over material properties...
Thanks to the abrupt advances in semiconductor technologies, particularly in terms of the operating ...
These last decades, optical telecommunications have made a spectacular success thanks to the explosi...
These last decades, optical telecommunications have made a spectacular success thanks to the explosi...
These last decades, optical telecommunications have made a spectacular success thanks to the explosi...
In the last couple of decades, terahertz (THz) technologies, which lie in the frequency gap between ...
Overview: The basic thesis for the advancement of millimetre-wave and terahertz electronics is repre...
Terahertz (THz) photonic devices are now exploiting emerging materials systems, while novel device d...
Terahertz (THz) photonic devices are now exploiting emerging materials systems, while novel device d...
Aligned with 5G vision for a fully mobile and connected society, Terahertz (THz) wireless communicat...
Almost 15 years have passed since the initial demonstrations of terahertz (THz) wireless communicati...
For the 2nd Towards THz Communications Workshop held on 7th March 2019 at the Albert Borschette Cong...
The THz spectral range is yet not fully exploited to its full potential due to the current limitatio...
As millimeter- and submillimeter-wave device and circuit technologies move from the laboratory into ...
As millimeter- and submillimeter-wave device and circuit technologies move from the laboratory into ...
Advances over the past decade have presented new avenues to achieve control over material properties...
Thanks to the abrupt advances in semiconductor technologies, particularly in terms of the operating ...