Thesis (Ph.D.)--University of Washington, 2012Optical spectroscopy represents a powerful characterization technique with the ability to directly interact with the electronic, spin, and lattice excitations in matter. In addition, through implementation of ultrafast techniques, further insight into the real-time dynamics of elementary interactions can be gained. However, the resolution of far-field microscopy techniques is restricted by the diffraction limit setting a spatial resolution limit in the 100s nm to micron range for visible and IR light, respectively. This resolution is too coarse for the characterization of mesoscopic phenomena in condensed matter physics. The development of experimental techniques with nanoscale resolution and se...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
In this article, we present an overview of aperture and apertureless type scanning near-field optica...
textThis thesis presents spectroscopic studies of metallic nanoparticle localized surface plasmons a...
Scanning near-field optical microscopy (SNOM) is a novel scanning probe microscopy technique capable...
Novel optical phenomena emerge on nanometer length scales which determine the macroscopic material r...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
The properties of localized surface plasmons (LSP) have been broadly utilized for chemical sensing, ...
This thesis investigates the fundamental nanoscale near-field light matter interaction between a pro...
Thesis (Ph.D.)--University of Washington, 2021The research field of nanophotonics, which aims to und...
Scanning Near-Field Optical Microscopy (SNOM) is a powerful optical imaging technique allowing sub-d...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
My thesis describes the study of nanoscale physics using infrared spectroscopy and nanoscopy methods...
We present the realisation of near-field spectroscopic measurements with fibre-tip-based scanning ne...
We map in real space and by purely optical means near-field optical information of localized surface...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
In this article, we present an overview of aperture and apertureless type scanning near-field optica...
textThis thesis presents spectroscopic studies of metallic nanoparticle localized surface plasmons a...
Scanning near-field optical microscopy (SNOM) is a novel scanning probe microscopy technique capable...
Novel optical phenomena emerge on nanometer length scales which determine the macroscopic material r...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
The properties of localized surface plasmons (LSP) have been broadly utilized for chemical sensing, ...
This thesis investigates the fundamental nanoscale near-field light matter interaction between a pro...
Thesis (Ph.D.)--University of Washington, 2021The research field of nanophotonics, which aims to und...
Scanning Near-Field Optical Microscopy (SNOM) is a powerful optical imaging technique allowing sub-d...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
My thesis describes the study of nanoscale physics using infrared spectroscopy and nanoscopy methods...
We present the realisation of near-field spectroscopic measurements with fibre-tip-based scanning ne...
We map in real space and by purely optical means near-field optical information of localized surface...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
In this article, we present an overview of aperture and apertureless type scanning near-field optica...
textThis thesis presents spectroscopic studies of metallic nanoparticle localized surface plasmons a...