The development of electron sources capable of temporal resolution on the order of 1 ps or less raises a number of questions associated with the estimation of the physical meaning and accuracy of the dynamic parameters based on the analysis of time-dependent scattering intensity. The use of low brightness ultrashort pulses with few electrons leads to the necessity for increasing the total exposure time and lengthening the time of data acquisition, with attendant problems with the limited sample. The sample restrictions can be mitigated by increasing the charge per pulse, i.e., by going to high brightness sources. Increasing in the number of electrons, however, is limited by the Coulomb repulsion between them, which leads on one hand to dist...
To study nature on the atomic scale one can use an electron microscope. However, this device cannot ...
In this thesis we show unprecedented 100-fold compression of space-charge dominated electron bunches...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
The ultrafast electron microscopy, electron diffraction, electron crystallography, and nanocrystallo...
The long held objective of directly observing atomic motions during the defining moments of chemistr...
The long held objective of directly observing atomic motions during the defining moments of chemistr...
AbstractPump–probe electron diffraction and ultrafast microscopy, based on laser excitation and prob...
The time resolution of crossed-beam experiments is explicitly related to velocity mismatch and other...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
Pulsed electron beams allow for the direct atomic-scale observation of structures with femtosecond t...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
We designed and constructed a state-of-the-art high current ultrafast gas electron diffraction exper...
168 pagesTime-resolved measurements provide information about dynamical processes and are essential ...
The impact of electron–electron interactions in the post-specimen region of ultrafast electron diffr...
To study nature on the atomic scale one can use an electron microscope. However, this device cannot ...
In this thesis we show unprecedented 100-fold compression of space-charge dominated electron bunches...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
The ultrafast electron microscopy, electron diffraction, electron crystallography, and nanocrystallo...
The long held objective of directly observing atomic motions during the defining moments of chemistr...
The long held objective of directly observing atomic motions during the defining moments of chemistr...
AbstractPump–probe electron diffraction and ultrafast microscopy, based on laser excitation and prob...
The time resolution of crossed-beam experiments is explicitly related to velocity mismatch and other...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
Pulsed electron beams allow for the direct atomic-scale observation of structures with femtosecond t...
Ultrafast electron diffraction is a novel pump-probe technique which aims to determine transient str...
We designed and constructed a state-of-the-art high current ultrafast gas electron diffraction exper...
168 pagesTime-resolved measurements provide information about dynamical processes and are essential ...
The impact of electron–electron interactions in the post-specimen region of ultrafast electron diffr...
To study nature on the atomic scale one can use an electron microscope. However, this device cannot ...
In this thesis we show unprecedented 100-fold compression of space-charge dominated electron bunches...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...