Time resolved electron diffraction is an alternative approach to FEL based X-ray experiments for the study of structural dynamics of matter on the relevant timescales. The required electron beam parameters are demanding in terms of emittance and bunch length and require the operation at charges typically well below 1 pC. Moreover the energy is low – a few MeV only. The longitudinal compression of the bunches can be realized with a simple longitudinal focusing scheme in a drift. In this paper the question of what limits the bunch length in this parameter regime is addressed by means of numerical simulations. Beside emittance increasing space charge effects also rf-curvature and nonlinear compression are identified as limiting factors
We demonstrate the compression of 95 keV, space-charge-dominated electron bunches to sub-100 fs dura...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Time resolved electron diffraction is an alternative approach to FEL based X-ray experiments for the...
Electron sources providing bunch length down to the fs regime and below are of increasing interest f...
Electron sources providing bunch length down to the fs regime and below are of increasing interest f...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Sub-fs electron bunch has been pursued in the last decade using several different methods. These met...
The dynamics of atomic scale structures during structural change can be studied by Ultrafast Electro...
AbstractThe production of ultra-short (fs or sub-fs long), high power, radiation pulses in the x-ray...
In this thesis we show unprecedented 100-fold compression of space-charge dominated electron bunches...
The production of ultra-short (fs or sub-fs long), high power, radiation pulses in the x-ray spectra...
The production of ultra-short (fs or sub-fs long), high power, radiation pulses in the x-ray spectra...
We demonstrate the compression of 95 keV, space-charge-dominated electron bunches to sub-100 fs dura...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Time resolved electron diffraction is an alternative approach to FEL based X-ray experiments for the...
Electron sources providing bunch length down to the fs regime and below are of increasing interest f...
Electron sources providing bunch length down to the fs regime and below are of increasing interest f...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Sub-fs electron bunch has been pursued in the last decade using several different methods. These met...
The dynamics of atomic scale structures during structural change can be studied by Ultrafast Electro...
AbstractThe production of ultra-short (fs or sub-fs long), high power, radiation pulses in the x-ray...
In this thesis we show unprecedented 100-fold compression of space-charge dominated electron bunches...
The production of ultra-short (fs or sub-fs long), high power, radiation pulses in the x-ray spectra...
The production of ultra-short (fs or sub-fs long), high power, radiation pulses in the x-ray spectra...
We demonstrate the compression of 95 keV, space-charge-dominated electron bunches to sub-100 fs dura...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...
Continuing size reduction in semiconductor manufacturing, and a push toward atomic time and spatial ...