A novel application of velocity-map imaging (VMI) is demonstrated, whereby the momentum distribution of photoelectrons ejected from a tungsten nanoscale metal tip (< 50 nm radius) is recorded following illumination with an ultrafast laser pulse. The electrostatic conditions in the VMI instrument are optimized through finite element modelling, taking into account a physically realistic geometry including all conductive elements in the vicinity of the electron trajectories. The instrument is calibrated by observing above threshold ionization in krypton gas, and simultaneous electron emission from this gas and a tungsten nanotip is presented, illustrating that the velocity mapping condition is maintained. Realizing photoelectron VMI for femtos...
Abstract Photon assisted Ultrafast Scanning Electron Microscopy (USEM) aims at combining the tempor...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
To achieve high temporal resolution for ultrafast electron diffraction, Zewail (Proc. Natl Acad. Sci...
By utilizing a nanometer ultrafast electron source in a point projection microscope we demonstrate t...
Recent developments in ultrafast electron microscopy have shown that spatial and temporal informatio...
Observing the motion of electrons on their natural nanometer length and femtosecond time scales is a...
Electron beams of high quality, e.g., low emittance, are of crucial importance for cutting-edge scie...
A velocity-map-imaging spectrometer is demonstrated to characterize the normalized emittance (root-m...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
We present the development of the first ultrafast transmission electron microscope (UTEM) driven by ...
Free electron quantum optics is an emerging sub-field of physics that uses laser light, often in com...
We study the interaction of swift electrons with laser and solids using a numerical approach, and sp...
Chemical reactions and phase transformations in nanometer-size objects may happen at very short time...
We present a nano-scale photoelectron source, optimized for ultrashort pulse durations and well-suit...
Abstract Photon assisted Ultrafast Scanning Electron Microscopy (USEM) aims at combining the tempor...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
To achieve high temporal resolution for ultrafast electron diffraction, Zewail (Proc. Natl Acad. Sci...
By utilizing a nanometer ultrafast electron source in a point projection microscope we demonstrate t...
Recent developments in ultrafast electron microscopy have shown that spatial and temporal informatio...
Observing the motion of electrons on their natural nanometer length and femtosecond time scales is a...
Electron beams of high quality, e.g., low emittance, are of crucial importance for cutting-edge scie...
A velocity-map-imaging spectrometer is demonstrated to characterize the normalized emittance (root-m...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
We present the development of the first ultrafast transmission electron microscope (UTEM) driven by ...
Free electron quantum optics is an emerging sub-field of physics that uses laser light, often in com...
We study the interaction of swift electrons with laser and solids using a numerical approach, and sp...
Chemical reactions and phase transformations in nanometer-size objects may happen at very short time...
We present a nano-scale photoelectron source, optimized for ultrashort pulse durations and well-suit...
Abstract Photon assisted Ultrafast Scanning Electron Microscopy (USEM) aims at combining the tempor...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
To achieve high temporal resolution for ultrafast electron diffraction, Zewail (Proc. Natl Acad. Sci...