Unveiling the spatial and temporal dynamics of a light pulse interacting with nanosized objects is of extreme importance to widen our understanding of how photons interact with matter at the nanoscale and trigger physical and photochemical phenomena. An ideal platform to study light–matter interactions with an unprecedented spatial resolution is represented by plasmonics, which enables an extreme confinement of optical energy into sub-wavelength volumes. The ability to resolve and control the dynamics of this energy confinement on the time scale of a single optical cycle is at the ultimate frontier towards a full control of nanoscale phenomena. Here, we resolve in the time domain the linear behavior of a single germanium plasmonic antenna i...
We report a time-resolved normal-incidence photoemission electron microscope with an imaging time-of...
At high intensities, light–matter interactions are controlled by the electric field of the exciting ...
I will describe recent advances in understanding the influence of nanoscale structure on plasmon-med...
Unveiling the spatial and temporal dynamics of a light pulse interacting with nanosized objects is o...
We performed electro-optic sampling of the pulses re-emitted by a heavily-doped germanium antenna re...
A metal nanoparticle can be considered as consisting of a base of positive ion cores and a sea of fr...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
Citation: Li, J., Saydanzad, E., & Thumm, U. (2018). Imaging Plasmonic Fields with Atomic Spatiotem...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Plasmonics provides an elegant way to effectively couple optical radiation to single sub-wavelength ...
We report a measurement on the temporal response of a plasmonic antenna at the femtosecond time scal...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
We report a time-resolved normal-incidence photoemission electron microscope with an imaging time-of...
At high intensities, light–matter interactions are controlled by the electric field of the exciting ...
I will describe recent advances in understanding the influence of nanoscale structure on plasmon-med...
Unveiling the spatial and temporal dynamics of a light pulse interacting with nanosized objects is o...
We performed electro-optic sampling of the pulses re-emitted by a heavily-doped germanium antenna re...
A metal nanoparticle can be considered as consisting of a base of positive ion cores and a sea of fr...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
Citation: Li, J., Saydanzad, E., & Thumm, U. (2018). Imaging Plasmonic Fields with Atomic Spatiotem...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Plasmonics provides an elegant way to effectively couple optical radiation to single sub-wavelength ...
We report a measurement on the temporal response of a plasmonic antenna at the femtosecond time scal...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
We report a time-resolved normal-incidence photoemission electron microscope with an imaging time-of...
At high intensities, light–matter interactions are controlled by the electric field of the exciting ...
I will describe recent advances in understanding the influence of nanoscale structure on plasmon-med...