Direct imaging of the electromagnetic fields generated by plasmon excitation at gold nanoscale voids is achieved with high spatial resolution using scanning near-field optical microscopy (SNOM). The spatial intensity distribution of the electromagnetic field in spherical Au void structures strongly depends on the light excitation wavelength and on the diameter and degree of truncation of the voids. Comparing the SNOM results with reflectivity measurements and boundary element calculations allows for a clear identification of the plasmon modes being activated in each case. The unique mapping of the high-field regions provides key information for the use of void nanostructures as substrates for surface-enhanced Raman scattering
Scanning Near-Field Optical Microscopy (SNOM) is a powerful optical imaging technique allowing sub-d...
Meso-scale plasmons are supported by structures with dimensions on the order of tens of plasmon wave...
Metallic nanoscale voids (“anti-nanoparticles”) are shown to possess radically different plasmon mod...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
A precise understanding of the near-field distributions of plasmonic nanostructures is indispensable...
Metallic nanoscale voids (“anti-nanoparticles”) are shown to possess radically different plasmon mod...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
We map in real space and by purely optical means near-field optical information of localized surface...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
International audienceThe near field of an isolated gold metallic nanoparticle laid on a quartz subs...
Nearfield scanning optical microscopy (NSOM) offers a practical means of optical imaging, optical se...
In this article, we present an overview of aperture and apertureless type scanning near-field optica...
The design of many promising, newly emerging classes of photonic metamaterials and subwavelength con...
The yield of sub-microscopic non-linear optical processes are very low. Therefore, intensive researc...
Thesis (Ph.D.)--University of Washington, 2012Optical spectroscopy represents a powerful characteriz...
Scanning Near-Field Optical Microscopy (SNOM) is a powerful optical imaging technique allowing sub-d...
Meso-scale plasmons are supported by structures with dimensions on the order of tens of plasmon wave...
Metallic nanoscale voids (“anti-nanoparticles”) are shown to possess radically different plasmon mod...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
A precise understanding of the near-field distributions of plasmonic nanostructures is indispensable...
Metallic nanoscale voids (“anti-nanoparticles”) are shown to possess radically different plasmon mod...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
We map in real space and by purely optical means near-field optical information of localized surface...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
International audienceThe near field of an isolated gold metallic nanoparticle laid on a quartz subs...
Nearfield scanning optical microscopy (NSOM) offers a practical means of optical imaging, optical se...
In this article, we present an overview of aperture and apertureless type scanning near-field optica...
The design of many promising, newly emerging classes of photonic metamaterials and subwavelength con...
The yield of sub-microscopic non-linear optical processes are very low. Therefore, intensive researc...
Thesis (Ph.D.)--University of Washington, 2012Optical spectroscopy represents a powerful characteriz...
Scanning Near-Field Optical Microscopy (SNOM) is a powerful optical imaging technique allowing sub-d...
Meso-scale plasmons are supported by structures with dimensions on the order of tens of plasmon wave...
Metallic nanoscale voids (“anti-nanoparticles”) are shown to possess radically different plasmon mod...