An analytical relativistic model is proposed to describe the relativistic ion acceleration in the interaction of ultra-intense laser pulses with thin-foil plasmas. It is found that there is a critical value of the ion momentum to make sure that the ions are trapped by the light sail and accelerated in the radiation pressure acceleration (RPA) region. If the initial ion momentum is smaller than the critical value, that is in the classical case of RPA, the potential has a deep well and traps the ions to be accelerated, as the same described before by simulation results [Eliasson et al., New J. Phys. 11, 073006 (2009)]. There is a new ion acceleration region different from RPA, called ultra-relativistic acceleration, if the ion momentum exceed...
Ion beams generated with ultra-intense laser-plasma accelerators hold promises to provide compact an...
Under optimal interaction conditions ions can be accelerated up to relativistic energies by a petawa...
Experiments have shown that the ion energy obtained by laser–ion acceleration can be optimized by ch...
In the effort of achieving high-energetic ion beams from the interaction of ultrashort laser pulses ...
We investigate the stability against the onset of Rayleigh-Taylor modes of a thin plasma foil accele...
We investigate the stability against the onset of Rayleigh-Taylor modes of a thin plasma foil accele...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Collisionless shock acceleration of carbon ions (C6+) is investigated in the ultra-relativistic regi...
Since the mid-80s, the field of laser plasma acceleration is a rapidly advancing field of research. ...
We analyze the motion of the plasma critical layer by two different processes in the relativistic-el...
<p>Plasma-based particle acceleration holds the promise to make the applications that revolve around...
Since the mid-80s, the field of laser plasma acceleration is a rapidly advancing field of research. ...
Ion beams generated with ultra-intense laser-plasma accelerators hold promises to provide compact an...
Under optimal interaction conditions ions can be accelerated up to relativistic energies by a petawa...
Experiments have shown that the ion energy obtained by laser–ion acceleration can be optimized by ch...
In the effort of achieving high-energetic ion beams from the interaction of ultrashort laser pulses ...
We investigate the stability against the onset of Rayleigh-Taylor modes of a thin plasma foil accele...
We investigate the stability against the onset of Rayleigh-Taylor modes of a thin plasma foil accele...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Radiation pressure acceleration (RPA) is a highly efficient mechanism of laser-driven ion accelerati...
Collisionless shock acceleration of carbon ions (C6+) is investigated in the ultra-relativistic regi...
Since the mid-80s, the field of laser plasma acceleration is a rapidly advancing field of research. ...
We analyze the motion of the plasma critical layer by two different processes in the relativistic-el...
<p>Plasma-based particle acceleration holds the promise to make the applications that revolve around...
Since the mid-80s, the field of laser plasma acceleration is a rapidly advancing field of research. ...
Ion beams generated with ultra-intense laser-plasma accelerators hold promises to provide compact an...
Under optimal interaction conditions ions can be accelerated up to relativistic energies by a petawa...
Experiments have shown that the ion energy obtained by laser–ion acceleration can be optimized by ch...