The role of the radiation reaction force in ultraintense laser-driven ion acceleration is investigated. For laser intensities ∼10 23W/cm2, the action of this force on electrons is demonstrated in relativistic particle-in-cell simulations to significantly enhance the energy transfer to ions in relativistically transparent targets, but strongly reduce the ion energy in dense plasma targets. An expression is derived for the revised piston velocity, and hence ion energy, taking account of energy loses to synchrotron radiation generated by electrons accelerated in the laser field. Ion mass is demonstrated to be important by comparing results obtained with proton and deuteron plasma. The results can be verified in experiments with cryogenic hydro...
At sufficiently high laser intensities, the rapid heating to relativistic velocities and resulting d...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Abstract Radiation Pressure Acceleration (RPA) by circularly polarized laser pulses is emerging as...
The role of the radiation reaction force in ultraintense laser-driven ion acceleration is investigat...
Collisionless shock acceleration of carbon ions (C6+) is investigated in the ultra-relativistic regi...
An investigation of the effects of the radiation reaction force on radiation pressure acceleration i...
The influence of laser frequency on laser-driven ion acceleration is investigated by means of two-di...
The effects of the radiation reaction (RR) force on thin foils undergoing radiation pressure acceler...
Experiments have shown that the ion energy obtained by laser–ion acceleration can be optimized by ch...
The measurements reported here provide scaling laws for the acceleration process in the ultra-short ...
Laser-driven ion sources are a rapidly developing technology producing high energy, high peak curren...
AbstractIon acceleration driven by high intensity laser pulses is attracting an impressive and stead...
Multi-species ion acceleration from ultra-thin foils was studied experimentally, employing the Vulca...
At the extremely high laser intensities expected in next generation experiments, electrons can becom...
Experiments investigating ion acceleration from laser-irradiated ultra-thin foils on the GEMINI lase...
At sufficiently high laser intensities, the rapid heating to relativistic velocities and resulting d...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Abstract Radiation Pressure Acceleration (RPA) by circularly polarized laser pulses is emerging as...
The role of the radiation reaction force in ultraintense laser-driven ion acceleration is investigat...
Collisionless shock acceleration of carbon ions (C6+) is investigated in the ultra-relativistic regi...
An investigation of the effects of the radiation reaction force on radiation pressure acceleration i...
The influence of laser frequency on laser-driven ion acceleration is investigated by means of two-di...
The effects of the radiation reaction (RR) force on thin foils undergoing radiation pressure acceler...
Experiments have shown that the ion energy obtained by laser–ion acceleration can be optimized by ch...
The measurements reported here provide scaling laws for the acceleration process in the ultra-short ...
Laser-driven ion sources are a rapidly developing technology producing high energy, high peak curren...
AbstractIon acceleration driven by high intensity laser pulses is attracting an impressive and stead...
Multi-species ion acceleration from ultra-thin foils was studied experimentally, employing the Vulca...
At the extremely high laser intensities expected in next generation experiments, electrons can becom...
Experiments investigating ion acceleration from laser-irradiated ultra-thin foils on the GEMINI lase...
At sufficiently high laser intensities, the rapid heating to relativistic velocities and resulting d...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Abstract Radiation Pressure Acceleration (RPA) by circularly polarized laser pulses is emerging as...