Time-domain terahertz spectroscopy allows measuring the complex conductivity spectrum of materials at frequencies on the order of 1 THz. Typically, terahertz (THz) studies produce conductivity spectra that are different from those predicted by the classical Drude model, especially in nanostructured materials. We claim that plasmon resonances in particles that are small compared to the THz wavelength cause these deviations. This is supported by measurements on photoexcited silicon, in bulk as well as in micron-sized particles. In the latter, the behavior is vastly different and strongly dependent on charge carrier concentration
The analysis of terahertz transmission through semiconducting thin films has proven to be an excelle...
Different materials including nonlinear crystals, nanowires, 2D aluminum gratings, organic liquids, ...
Abstract: The microscopic details of carrier transport in nanocrystalline colloidal thin films is re...
Understanding the ultrafast dynamics of photoexcited carriers in semiconductor nanostructures and th...
Nearfield terahertz spectroscopy can be used to probe the terahertz conductivity of individual reson...
We explore conductivity of nanostructures in the terahertz range. We model the nanostructure as a sq...
The time-resolved conductivity of isolated GaAs nanowires is investigated by optical-pump terahertz-...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
The history of RF technology can provide human beings a powerful lesson that the infrastructure of m...
It is known that deviation from the Drude law for free carriers is dramatic in most electronically c...
We have used terahertz spectroscopy to measure the conductivity and time-resolved photoconductivity ...
The fascinating properties of plasmonic structures have had significant impact on the development of...
The time-resolved conductivity of isolated GaAs nanowires is investigated by optical-pump terahertz-...
We review pioneering and recent studies of the conductivity of solid state systems at terahertz freq...
Terahertz time-domain spectroscopy (THz-TDS) is a powerful tool which has been used to probe the low...
The analysis of terahertz transmission through semiconducting thin films has proven to be an excelle...
Different materials including nonlinear crystals, nanowires, 2D aluminum gratings, organic liquids, ...
Abstract: The microscopic details of carrier transport in nanocrystalline colloidal thin films is re...
Understanding the ultrafast dynamics of photoexcited carriers in semiconductor nanostructures and th...
Nearfield terahertz spectroscopy can be used to probe the terahertz conductivity of individual reson...
We explore conductivity of nanostructures in the terahertz range. We model the nanostructure as a sq...
The time-resolved conductivity of isolated GaAs nanowires is investigated by optical-pump terahertz-...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
The history of RF technology can provide human beings a powerful lesson that the infrastructure of m...
It is known that deviation from the Drude law for free carriers is dramatic in most electronically c...
We have used terahertz spectroscopy to measure the conductivity and time-resolved photoconductivity ...
The fascinating properties of plasmonic structures have had significant impact on the development of...
The time-resolved conductivity of isolated GaAs nanowires is investigated by optical-pump terahertz-...
We review pioneering and recent studies of the conductivity of solid state systems at terahertz freq...
Terahertz time-domain spectroscopy (THz-TDS) is a powerful tool which has been used to probe the low...
The analysis of terahertz transmission through semiconducting thin films has proven to be an excelle...
Different materials including nonlinear crystals, nanowires, 2D aluminum gratings, organic liquids, ...
Abstract: The microscopic details of carrier transport in nanocrystalline colloidal thin films is re...