We present the realisation of near-field spectroscopic measurements with fibre-tip-based scanning near-field microscopy. It allows the simultaneous acquisition of near-field images in a broad spectral range (400 nm to 1000 nm), thus recovering local spectroscopic information. This technique is essential in order to understand the resonant interaction of light with nanostructured material as the far-field and nearfield spectral response can differ significantly, e.g., in the case of plasmonic nanostructures. Several example applications of hyperspectral near-field imaging are given for visualisation of Bloch modes in plasmonic crystals and plasmon-assisted transmission through a slit. © 2010 Optical Society of America
We map in real space and by purely optical means near-field optical information of localized surface...
Abstract. This article is a comprehensive review of the subject of near-field nano imaging and spect...
Scanning near-field optical microscopy (SNOM) is an optical microscopy whose resolution is not bound...
We present the realisation of near-field spectroscopic measurements with fibre-tip-based scanning ne...
This Minireview presents an overview of near-field hyperspectral imaging and discusses its applicati...
The scanning near-field optical microscopy (SNOM) is used to analyze optical phenomena at the sub-wa...
We use scanning near-field optical microscopy (SNOM) to characterize different plasmonic-nanopartic...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
The main goal of this dissertation was to realize a fully automated and robust dual-tip scanning nea...
Nearfield scanning optical microscopy (NSOM) offers a practical means of optical imaging, optical se...
We use scanning near field optical microscopy SNOM to characterize different plasmonic nanoparticl...
This article is a comprehensive review of the subject of near-field nano imaging and spectroscopy b...
Thesis (Ph.D.)--University of Washington, 2012Optical spectroscopy represents a powerful characteriz...
Apertureless scanning near-field optical microscopy is a valuable tool for characterization of chemi...
In this review we describe fundamentals of scanning near-field optical microscopy with aperture prob...
We map in real space and by purely optical means near-field optical information of localized surface...
Abstract. This article is a comprehensive review of the subject of near-field nano imaging and spect...
Scanning near-field optical microscopy (SNOM) is an optical microscopy whose resolution is not bound...
We present the realisation of near-field spectroscopic measurements with fibre-tip-based scanning ne...
This Minireview presents an overview of near-field hyperspectral imaging and discusses its applicati...
The scanning near-field optical microscopy (SNOM) is used to analyze optical phenomena at the sub-wa...
We use scanning near-field optical microscopy (SNOM) to characterize different plasmonic-nanopartic...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
The main goal of this dissertation was to realize a fully automated and robust dual-tip scanning nea...
Nearfield scanning optical microscopy (NSOM) offers a practical means of optical imaging, optical se...
We use scanning near field optical microscopy SNOM to characterize different plasmonic nanoparticl...
This article is a comprehensive review of the subject of near-field nano imaging and spectroscopy b...
Thesis (Ph.D.)--University of Washington, 2012Optical spectroscopy represents a powerful characteriz...
Apertureless scanning near-field optical microscopy is a valuable tool for characterization of chemi...
In this review we describe fundamentals of scanning near-field optical microscopy with aperture prob...
We map in real space and by purely optical means near-field optical information of localized surface...
Abstract. This article is a comprehensive review of the subject of near-field nano imaging and spect...
Scanning near-field optical microscopy (SNOM) is an optical microscopy whose resolution is not bound...