We analyze the motion of the plasma critical layer by two different processes in the relativistic-electron laser-plasma interaction regime (a0>1)(a0>1). The differences are highlighted when the critical layer ions are stationary in contrast to when they move with it. Controlling the speed of the plasma critical layer in this regime is essential for creating low-β traveling acceleration structures of sufficient laser-excited potential for laser ion accelerators. In Relativistically Induced Transparency Acceleration (RITA) scheme, the heavy plasma-ions are fixed and only trace-density light-ions are accelerated. The relativistic critical layer and the acceleration structure move longitudinally forward by laser inducing transparency through ap...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
Since the mid-80s, the field of laser plasma acceleration is a rapidly advancing field of research. ...
An analytical relativistic model is proposed to describe the relativistic ion acceleration in the in...
<p>Plasma-based particle acceleration holds the promise to make the applications that revolve around...
At sufficiently high laser intensities, the rapid heating to relativistic velocities and resulting d...
In this work we analyze the longitudinal instabilities of propagating acceleration structures that a...
In the effort of achieving high-energetic ion beams from the interaction of ultrashort laser pulses ...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The relativistically induced transparency acceleration (RITA) scheme of proton and ion acceleration ...
Under optimal interaction conditions ions can be accelerated up to relativistic energies by a petawa...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
Since the mid-80s, the field of laser plasma acceleration is a rapidly advancing field of research. ...
An analytical relativistic model is proposed to describe the relativistic ion acceleration in the in...
<p>Plasma-based particle acceleration holds the promise to make the applications that revolve around...
At sufficiently high laser intensities, the rapid heating to relativistic velocities and resulting d...
In this work we analyze the longitudinal instabilities of propagating acceleration structures that a...
In the effort of achieving high-energetic ion beams from the interaction of ultrashort laser pulses ...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The relativistically induced transparency acceleration (RITA) scheme of proton and ion acceleration ...
Under optimal interaction conditions ions can be accelerated up to relativistic energies by a petawa...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
Since the mid-80s, the field of laser plasma acceleration is a rapidly advancing field of research. ...