Enhanced backward-acceleration of ions is experimentally observed when ultra-short, high-intensity and ultra-high-contrast laser pulses interact with thin foils having thicknesses in the order of the penetration depth of the laser light. Below the experimentally observed optimum foil thickness for the maximum ion energy versus thickness, there arises a second peak. 1D simulations on foils with an initial plasma density gradient show a similar trend as the experiment. It appears that in this regime of extremely thin foils it is important to take into account the limited expansion of the plasma that is formed by ultra-high-contrast pulses
This thesis reports on experimental investigations into ion acceleration driven by high power laser ...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...
We have compared the acceleration of high-energy ions from the rear-surface of thin foils for variou...
Enhanced backward-acceleration of ions is experimentally observed when ultra-short, high-intensity a...
The influence of a plasma density gradient on ions accelerated along the specular (back reflection) ...
Ion acceleration resulting from the interaction of ultra-high intensity (2 x 10(20) W/cm(2)) and ult...
We report on experimental investigations of ion acceleration from thin foil targets irradiated with ...
A theory for ion acceleration by ultrashort laser pulses is presented to evaluate the maximum ion en...
Experiments on ion acceleration by irradiation of ultra-thin diamond-like carbon (DLC) foils, with t...
This thesis presents experimental measurements, supported by particle-in-cell simulations, of ion be...
Abstract: Ion acceleration in the interaction of ultrashort intense laser pulses ( ~ 2×1019 W/cm2, ...
Laser-driven ion sources are a rapidly developing technology producing high energy, high peak curren...
The acceleration of sub-wavelength, solid-density plasma foils by the ultraintense radiation pressur...
The measurements reported here provide scaling laws for the acceleration process in the ultra-short ...
This thesis reports on experimental and numerical investigations of ion acceleration and the underly...
This thesis reports on experimental investigations into ion acceleration driven by high power laser ...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...
We have compared the acceleration of high-energy ions from the rear-surface of thin foils for variou...
Enhanced backward-acceleration of ions is experimentally observed when ultra-short, high-intensity a...
The influence of a plasma density gradient on ions accelerated along the specular (back reflection) ...
Ion acceleration resulting from the interaction of ultra-high intensity (2 x 10(20) W/cm(2)) and ult...
We report on experimental investigations of ion acceleration from thin foil targets irradiated with ...
A theory for ion acceleration by ultrashort laser pulses is presented to evaluate the maximum ion en...
Experiments on ion acceleration by irradiation of ultra-thin diamond-like carbon (DLC) foils, with t...
This thesis presents experimental measurements, supported by particle-in-cell simulations, of ion be...
Abstract: Ion acceleration in the interaction of ultrashort intense laser pulses ( ~ 2×1019 W/cm2, ...
Laser-driven ion sources are a rapidly developing technology producing high energy, high peak curren...
The acceleration of sub-wavelength, solid-density plasma foils by the ultraintense radiation pressur...
The measurements reported here provide scaling laws for the acceleration process in the ultra-short ...
This thesis reports on experimental and numerical investigations of ion acceleration and the underly...
This thesis reports on experimental investigations into ion acceleration driven by high power laser ...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...
We have compared the acceleration of high-energy ions from the rear-surface of thin foils for variou...