Observing the motion of electrons on their natural nanometer length and femtosecond time scales is a fundamental goal of and an open challenge for contemporary ultrafast science. At present, optical techniques and electron microscopy mostly provide either ultrahigh temporal or spatial resolution, and microscopy techniques with combined space-time resolution require further development. In this study, we create an ultrafast electron source via plasmon nanofocusing on a sharp gold taper and implement this source in an ultrafast point-projection electron microscope. This source is used in an optical pump—electron probe experiment to study ultrafast photoemissions from a nanometer-sized plasmonic antenna. We probe the real space motion of the ...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
The near-field properties and dynamics of plasmonic nanostructures play a crucial role in several fu...
Femtosecond electron microscopy produces real-space images of matter in a series of ultrafast snapsh...
Observing the motion of electrons on their natural nanometer length and femtosecond time scales is a...
Observing the motion of electrons on their natural nanometer length and femtosecond time scales is a...
We implement a plasmon-driven ultrafast electron source in a point-projection electron microscope. A...
By utilizing a nanometer ultrafast electron source in a point projection microscope we demonstrate t...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
We implement a plasmon-driven ultrafast electron source in a point-projection electron microscope. A...
We implement a plasmon-driven ultrafast electron source in a point-projection electron microscope. A...
Recent developments in ultrafast electron microscopy have shown that spatial and temporal informatio...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
Simultaneous spatiotemporal confinement of energetic electron pulses to femtosecond and nanometer sc...
Electrons in the energy range below 1 keV are strongly scattering probes, providing unique sensitivi...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
The near-field properties and dynamics of plasmonic nanostructures play a crucial role in several fu...
Femtosecond electron microscopy produces real-space images of matter in a series of ultrafast snapsh...
Observing the motion of electrons on their natural nanometer length and femtosecond time scales is a...
Observing the motion of electrons on their natural nanometer length and femtosecond time scales is a...
We implement a plasmon-driven ultrafast electron source in a point-projection electron microscope. A...
By utilizing a nanometer ultrafast electron source in a point projection microscope we demonstrate t...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
We implement a plasmon-driven ultrafast electron source in a point-projection electron microscope. A...
We implement a plasmon-driven ultrafast electron source in a point-projection electron microscope. A...
Recent developments in ultrafast electron microscopy have shown that spatial and temporal informatio...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
Simultaneous spatiotemporal confinement of energetic electron pulses to femtosecond and nanometer sc...
Electrons in the energy range below 1 keV are strongly scattering probes, providing unique sensitivi...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
The near-field properties and dynamics of plasmonic nanostructures play a crucial role in several fu...
Femtosecond electron microscopy produces real-space images of matter in a series of ultrafast snapsh...