We observe an anomalously high electric field of terahertz (THz) radiation acting on a two-dimensional electron gas (2DEG) placed beneath a thin gold film, which, however, is supposed to be opaque at THz frequencies. We show that the anomalously strong penetration of the THz electric field through a very high conductive gold film emerges if two conditions are fulfilled simultaneously: (i) the film's thickness is less than the skin depth and (ii) the THz electric field is measured beneath the film at distances substantially smaller than the radiation wavelength. We demonstrate that under these conditions, the strength of the field acting on a 2DEG is almost the same as it would be in the absence of the gold film. The effect is detected for m...
We analyze ultra strong non-resonant field enhancement of THz field in periodic arrays of nanoslits ...
Many mid- and far-infrared semiconductor photodetectors rely on a photonic response, when the photon...
Electromagnetic wave emission based on optical rectification at terahertz (THz) wavelengths was obse...
We observe an anomalously high electric field of terahertz (THz) radiation acting on a two-dimension...
The unique optical properties of metals are at the core of many areas of research and applications, ...
Various material properties change considerably when material is thinned down to nanometer thickness...
We have studied theoretically and experimentally the influence of a dielectric substrate on the freq...
We report on the surprisingly strong, broadband emission of coherent terahertz pulses from ultrathin...
Terahertz fields can be dramatically enhanced as they propagate through nanometer-sized slits. The e...
Linear and nonlinear electron dynamics of polycrystalline gold (Au) ultrathin films with thicknesses...
erahertz near fields of gold metamaterials resonant at a frequency of 0.88 THz allow us to enter an ...
We investigate the ultrafast electron dynamics triggered by terahertz and optical pulses in thin pla...
Terahertz light is electromagnetic radiation, similar to visible light. The photons that the teraher...
Nonlinear interaction between strong-field terahertz electromagnetic waves and matters will become o...
The conductivities of thin Al, Au, and Ag films were measured via their transmission at terahertz fr...
We analyze ultra strong non-resonant field enhancement of THz field in periodic arrays of nanoslits ...
Many mid- and far-infrared semiconductor photodetectors rely on a photonic response, when the photon...
Electromagnetic wave emission based on optical rectification at terahertz (THz) wavelengths was obse...
We observe an anomalously high electric field of terahertz (THz) radiation acting on a two-dimension...
The unique optical properties of metals are at the core of many areas of research and applications, ...
Various material properties change considerably when material is thinned down to nanometer thickness...
We have studied theoretically and experimentally the influence of a dielectric substrate on the freq...
We report on the surprisingly strong, broadband emission of coherent terahertz pulses from ultrathin...
Terahertz fields can be dramatically enhanced as they propagate through nanometer-sized slits. The e...
Linear and nonlinear electron dynamics of polycrystalline gold (Au) ultrathin films with thicknesses...
erahertz near fields of gold metamaterials resonant at a frequency of 0.88 THz allow us to enter an ...
We investigate the ultrafast electron dynamics triggered by terahertz and optical pulses in thin pla...
Terahertz light is electromagnetic radiation, similar to visible light. The photons that the teraher...
Nonlinear interaction between strong-field terahertz electromagnetic waves and matters will become o...
The conductivities of thin Al, Au, and Ag films were measured via their transmission at terahertz fr...
We analyze ultra strong non-resonant field enhancement of THz field in periodic arrays of nanoslits ...
Many mid- and far-infrared semiconductor photodetectors rely on a photonic response, when the photon...
Electromagnetic wave emission based on optical rectification at terahertz (THz) wavelengths was obse...