Plasmonic bowtie antennas made of doped silicon can operate as plasmonic resonators at terahertz (THz) frequencies and provide large field enhancement close to their gap. We demonstrate both experimentally and theoretically that the field confinement close to the surface of the antenna enables the detection of ultrathin (100 nm) inorganic films, about 3750 times thinner than the free space wavelength. Based on model calculations, we conclude that the detection sensitivity and its variation with the thickness of the deposited layer are related to both the decay of the local THz field profile around the antenna and the local field enhancement in the gap of the bowtie antenna. This large field enhancement has the potential to improve the detec...
We have observed resonant terahertz transmission peaks in samples comprising perforated periodic hol...
Planar metamaterials consisting of subwavelength resonators have been recently proposed for thin die...
Ge-on-Si plasmonics holds the promise for compact and low-cost solutions in the manipulation of THz ...
Plasmonic bowtie antennas made of doped silicon can operate as plasmonic resonators at terahertz (TH...
Plasmonic bowtie antennas made of doped silicon can operate as plasmonic resonators at terahertz (TH...
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
We perform THz near-field measurements on bowtie antennas made of doped Si and gold. The measurement...
Localized Surface Plasmon Resonances (LSPR) based on highly doped semiconductors microstructures, su...
We present a review of experimental studies of resonant excitation of terahertz surface plasmons in ...
Various material properties change considerably when material is thinned down to nanometer thickness...
A review of transmission properties of two-dimensional plasmonic structures in the terahertz regime...
The fingerprint spectral response of several materials with terahertz electromagnetic radiation indi...
Terahertz plasmonics is one of the fascinating research fields that includes diverse applications in...
We demonstrate the absorption characteristics of silicon microring resonators at terahertz frequenci...
The fascinating properties of plasmonic structures have had significant impact on the development of...
We have observed resonant terahertz transmission peaks in samples comprising perforated periodic hol...
Planar metamaterials consisting of subwavelength resonators have been recently proposed for thin die...
Ge-on-Si plasmonics holds the promise for compact and low-cost solutions in the manipulation of THz ...
Plasmonic bowtie antennas made of doped silicon can operate as plasmonic resonators at terahertz (TH...
Plasmonic bowtie antennas made of doped silicon can operate as plasmonic resonators at terahertz (TH...
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
We perform THz near-field measurements on bowtie antennas made of doped Si and gold. The measurement...
Localized Surface Plasmon Resonances (LSPR) based on highly doped semiconductors microstructures, su...
We present a review of experimental studies of resonant excitation of terahertz surface plasmons in ...
Various material properties change considerably when material is thinned down to nanometer thickness...
A review of transmission properties of two-dimensional plasmonic structures in the terahertz regime...
The fingerprint spectral response of several materials with terahertz electromagnetic radiation indi...
Terahertz plasmonics is one of the fascinating research fields that includes diverse applications in...
We demonstrate the absorption characteristics of silicon microring resonators at terahertz frequenci...
The fascinating properties of plasmonic structures have had significant impact on the development of...
We have observed resonant terahertz transmission peaks in samples comprising perforated periodic hol...
Planar metamaterials consisting of subwavelength resonators have been recently proposed for thin die...
Ge-on-Si plasmonics holds the promise for compact and low-cost solutions in the manipulation of THz ...