This thesis is dedicated to the development of a beam blanker for Ultrafast Electron Microscopy. Ultrafast electron microscopy aims to resolve structural dynamics at the nanometer and (sub) picosecond time scale. In these temporal and spatial scales many important processes in physics, chemistry and biology do occur. Examples of these are the interaction of light with small nano-patterned devices, the propagation is acoustic waves and phonons, the dynamics of melting and crystallization of materials. An example in biology is in photosynthesis, i.e. the dynamics of light harvesting complexes.ImPhys/Microscopy Instrumentation & Technique
We advance ultrafast electron microscopy from atomic motions into the domain of electron-dynamics. S...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Seminario,St. Etienne, Francia, December 11, 2019Femtosecond laser processing of materials allows th...
We present a new method to create ultrashort electron pulses by integrating a photoconductive switch...
Crucial for the field of ultrafast electron microscopy is the creation of sub-picosecond, high brigh...
Scanning electron microscopes (SEMs) can capture detail on the single nanometer length scale through...
At Eindhoven University of Technology we are developing new methods for generating beams for ultrafa...
In recent decades, in situ electron microscopy has attracted considerable attention. The method enab...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
Coherent electron beams for ultrafast structural dynamics Jom Luiten Eindhoven University of Technol...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
Observing atomic motions as they occur is the dream goal of ultrafast electron microscopy (UEM). Gre...
Extended abstract of a paper presented at Microscopy and Microanalysis 2012 in Phoenix, Arizona, USA...
International audienceChemical reactions and phase transformations in nanometer-size objects may hap...
We advance ultrafast electron microscopy from atomic motions into the domain of electron-dynamics. S...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Seminario,St. Etienne, Francia, December 11, 2019Femtosecond laser processing of materials allows th...
We present a new method to create ultrashort electron pulses by integrating a photoconductive switch...
Crucial for the field of ultrafast electron microscopy is the creation of sub-picosecond, high brigh...
Scanning electron microscopes (SEMs) can capture detail on the single nanometer length scale through...
At Eindhoven University of Technology we are developing new methods for generating beams for ultrafa...
In recent decades, in situ electron microscopy has attracted considerable attention. The method enab...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
Coherent electron beams for ultrafast structural dynamics Jom Luiten Eindhoven University of Technol...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
Observing atomic motions as they occur is the dream goal of ultrafast electron microscopy (UEM). Gre...
Extended abstract of a paper presented at Microscopy and Microanalysis 2012 in Phoenix, Arizona, USA...
International audienceChemical reactions and phase transformations in nanometer-size objects may hap...
We advance ultrafast electron microscopy from atomic motions into the domain of electron-dynamics. S...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Seminario,St. Etienne, Francia, December 11, 2019Femtosecond laser processing of materials allows th...