Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel physical phenomena. A recently available regime is based on the interaction between a relativistic intensity few-cycle laser pulse and a sub-wavelength-sized mass-limited plasma target. Here, we investigate the generation of electron bunches under these extreme conditions by means of particle-in-cell simulations. In a first step, up to all electrons are expelled from the nanodroplet and gain relativistic energy from time-dependent local field enhancement at the surface. After this ejection, the electrons are further accelerated as they copropagate with the laser pulse. As a result, a few, or under specific conditions isolated, pC-class relativ...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Laser-plasma electron accelerators can be used to produce high-intensity x-rays, as electrons accele...
Attosecond electron bunches and attosecond radiation pulses enable the study of ultrafast dynamics o...
For controllable generation of an isolated attosecond relativistic electron bunch [relativistic elec...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Laser-plasma electron accelerators can be used to produce high-intensity x-rays, as electrons accele...
Attosecond electron bunches and attosecond radiation pulses enable the study of ultrafast dynamics o...
For controllable generation of an isolated attosecond relativistic electron bunch [relativistic elec...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...