An increase of the operating frequencies of electromagnetic waves leads from the well-estalished terahertz technology to the visual and reaches petahertz radiation. It is shown that electromagnetic radiation close to petahertz is attractive for technology where knowledge about radio waves can be applied. The dimensions of such radiation are still classically macroscopic; however, molecular components such as resonators were used where quantum mechanics rules have to be considered. Constructions of coupled resonators for energy transfer are as well demonstrated as molecular components for optical metamaterials
Terahertz band lying between infrared and microwave is a very promising part of electromagnetic spec...
Metamaterials are artificial composites that acquire their electromagnetic properties from embedded ...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.3]{Spectrum.eps} \end{wrapfigure} Since t...
An increase of the operating frequencies of electromagnetic waves leads from the well-estalished ter...
Recent theoretical and experimental research is triggering interest to technologies based on radiati...
Artificial materials are three dimensional surfaces which can manipulate, focus and filter electro-m...
THz or submillimetre-wave sensing covers the frequency range from 300 GHz to 10 THz (wavelengths fro...
Although terahertz (THz) radiation was first observed about hundred years ago, the corresponding por...
Electromagnetic radiation, commonly referred to as light, provides the basis for a wide range of tec...
Recent advances in high-current particle beam, bright photoinjector, laser and radiofrequency techno...
The terahertz regime of the electromagnetic spectrum was largely unexplored due to the lack of techn...
Terahertz methods have developed strongly in recent years resulting in an emergence of applications ...
Microwaves travel line of sight, unlike lower frequency radio waves and its photon energy is around ...
THz propagation through materials may reveal unique macroscopic and physical properties of their int...
Bio-molecules, due to their structure and size, havevibrational and rotational resonances at THz fre...
Terahertz band lying between infrared and microwave is a very promising part of electromagnetic spec...
Metamaterials are artificial composites that acquire their electromagnetic properties from embedded ...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.3]{Spectrum.eps} \end{wrapfigure} Since t...
An increase of the operating frequencies of electromagnetic waves leads from the well-estalished ter...
Recent theoretical and experimental research is triggering interest to technologies based on radiati...
Artificial materials are three dimensional surfaces which can manipulate, focus and filter electro-m...
THz or submillimetre-wave sensing covers the frequency range from 300 GHz to 10 THz (wavelengths fro...
Although terahertz (THz) radiation was first observed about hundred years ago, the corresponding por...
Electromagnetic radiation, commonly referred to as light, provides the basis for a wide range of tec...
Recent advances in high-current particle beam, bright photoinjector, laser and radiofrequency techno...
The terahertz regime of the electromagnetic spectrum was largely unexplored due to the lack of techn...
Terahertz methods have developed strongly in recent years resulting in an emergence of applications ...
Microwaves travel line of sight, unlike lower frequency radio waves and its photon energy is around ...
THz propagation through materials may reveal unique macroscopic and physical properties of their int...
Bio-molecules, due to their structure and size, havevibrational and rotational resonances at THz fre...
Terahertz band lying between infrared and microwave is a very promising part of electromagnetic spec...
Metamaterials are artificial composites that acquire their electromagnetic properties from embedded ...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.3]{Spectrum.eps} \end{wrapfigure} Since t...