We record time-resolved nonlinear photoemission electron microscopy (tr-PEEM) images of propagating surface plasmons (PSPs) launched from a lithographically patterned rectangular trench on a flat gold surface. Our tr-PEEM scheme involves a pair of identical, spatially separated, and interferometrically locked femtosecond laser pulses. Power-dependent PEEM images provide experimental evidence for a sequential coherent nonlinear photoemission process, in which one laser source launches a PSP through a linear interaction, and the second subsequently probes the PSP via two-photon photoemission. The recorded time-resolved movies of a PSP allow us to directly measure various properties of the surface-bound wave packet, including its carrier wavel...
We image the field enhancement at Ag nanostructures using femtosecond laser pulses with a center wav...
Ultrafast nano-optics is a new and quickly evolving research field centred around the control, manip...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
Overcoming the dissipative nature of propagating surface plasmons (PSPs) is a prerequisite to realiz...
Time-resolved photoemission electron microscopy images recorded using a combination of ultrafast 800...
We report a time-resolved normal-incidence photoemission electron microscope with an imaging time-of...
In combining time-resolved two-photon photoemission (TR-2PPE) and photoemission electron microscopy ...
We experimentally study photoemission from gold nanodisk arrays using space-, time-, and energy-reso...
The near-field properties and dynamics of plasmonic nanostructures play a crucial role in several fu...
Nonlinear photoemission electron microscopy (PEEM) of nanohole arrays in gold films is used to map p...
Experimental methods for ultrafast microscopy are advancing rapidly. Promising methods combine ultra...
We introduce a novel time-resolved photoemission-based near-field illumination method, referred to a...
Nonlinear photoemission electron microscopy of isolated nanoholes in gold thin films maps propagatin...
Attosecond pulses allow for imaging of very fast processes, like electron dynamics. Stockman et al. ...
We experimentally and theoretically visualize the propagation of short-range surface plasmon polarit...
We image the field enhancement at Ag nanostructures using femtosecond laser pulses with a center wav...
Ultrafast nano-optics is a new and quickly evolving research field centred around the control, manip...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
Overcoming the dissipative nature of propagating surface plasmons (PSPs) is a prerequisite to realiz...
Time-resolved photoemission electron microscopy images recorded using a combination of ultrafast 800...
We report a time-resolved normal-incidence photoemission electron microscope with an imaging time-of...
In combining time-resolved two-photon photoemission (TR-2PPE) and photoemission electron microscopy ...
We experimentally study photoemission from gold nanodisk arrays using space-, time-, and energy-reso...
The near-field properties and dynamics of plasmonic nanostructures play a crucial role in several fu...
Nonlinear photoemission electron microscopy (PEEM) of nanohole arrays in gold films is used to map p...
Experimental methods for ultrafast microscopy are advancing rapidly. Promising methods combine ultra...
We introduce a novel time-resolved photoemission-based near-field illumination method, referred to a...
Nonlinear photoemission electron microscopy of isolated nanoholes in gold thin films maps propagatin...
Attosecond pulses allow for imaging of very fast processes, like electron dynamics. Stockman et al. ...
We experimentally and theoretically visualize the propagation of short-range surface plasmon polarit...
We image the field enhancement at Ag nanostructures using femtosecond laser pulses with a center wav...
Ultrafast nano-optics is a new and quickly evolving research field centred around the control, manip...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...