Photonic and plasmonic devices rely on nanoscale control of the local density of optical states (LDOS) in dielectric and metallic environments. The tremendous progress in designing and tailoring the electric LDOS of nano-resonators requires an investigation tool that is able to access the detailed features of the optical localized resonant modes with deep-subwavelength spatial resolution. This scenario has motivated the development of different nanoscale imaging techniques. Here, we prove that a technique involving the combination of scanning near-field optical microscopy with resonant scattering spectroscopy enables imaging the electric LDOS in nano-resonators with outstanding spatial resolution (l/19) by means of a pure optical method bas...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
Photonic and plasmonic devices rely on nanoscale control of the local density of optical states (LDO...
Photonic and plasmonic devices rely on nanoscale control of the local density of optical states (LDO...
Photonic and plasmonic devices rely on nanoscale control of the local density of optical states (LDO...
International audienceA deep-subwavelength imaging of the optical-guided modes localized in silicon ...
In this thesis we experimentally developed high-resolution groundbreaking imaging techniques and nov...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
We discuss recent progress and the exciting potential of scanning probe microscopy methods for the c...
We describe the application of scanning near-field optical microscopy (SNOM) for the high-resolution...
We present an overview of our work on the application of scanning near-field optical microscopy (SNO...
\u3cp\u3eThe optical behavior of coupled systems, in which the breaking of parity and time-reversal ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
Photonic and plasmonic devices rely on nanoscale control of the local density of optical states (LDO...
Photonic and plasmonic devices rely on nanoscale control of the local density of optical states (LDO...
Photonic and plasmonic devices rely on nanoscale control of the local density of optical states (LDO...
International audienceA deep-subwavelength imaging of the optical-guided modes localized in silicon ...
In this thesis we experimentally developed high-resolution groundbreaking imaging techniques and nov...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
We discuss recent progress and the exciting potential of scanning probe microscopy methods for the c...
We describe the application of scanning near-field optical microscopy (SNOM) for the high-resolution...
We present an overview of our work on the application of scanning near-field optical microscopy (SNO...
\u3cp\u3eThe optical behavior of coupled systems, in which the breaking of parity and time-reversal ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...
The optical near field of a high- Q and ultrasmall volume photonic crystal nanocavity is visualized ...