The efficient transfer of angular orbital momentum from circularly polarized laser pulses into ions of solid density targets is investigated with different geometries using particle-in-cell simulations. The detailed electron and ion dynamics presented focus upon the energy and momentum conversion efficiency. It is found that the momentum transfer is more efficient for spiral targets and the maximum value is obtained when the spiral step is equal to twice the laser wavelength. This study reveals that the angular momentum distribution of ions strongly depends up on the initial target shape and density
This theoretical and numerical thesis is devoted to electron acceleration from the interaction betwe...
Acceleration of ions from ultrathin foils irradiated by intense circularly polarized laser pulses is...
We consider the Directed Coulomb Explosion regime of ion acceleration from ultra-thin double layer (...
Three-dimensional "particle in cell" simulations show that a quasistatic magnetic field can be gener...
Abstract Radiation Pressure Acceleration (RPA) by circularly polarized laser pulses is emerging as...
A megagauss quasistatic axial magnetic field can be produced from the interaction of an intense lase...
The acceleration of ions in the interaction of high intensity laser pulses with overdense plasmas is...
Using plasma mirror injection we demonstrate, both analytically and numerically, that a circularly p...
The effects of laser-pulse polarization on the generation of an electrostatic shock in an overdense ...
A direct comparison of the properties of electron beam generated by antiparallel circularly polarize...
Magnetized high energy density physics offers new opportunities for observing magnetic field-related...
The acceleration of ions from ultrathin (10-100 nm) carbon foils has been investigated using intense...
Pulse shaping of circularly polarized laser pulses in nonuniform overdense plasmas are investigated ...
We investigated ion acceleration by an electrostatic shock in an exploded target irradiated by an ul...
The Spanish Pulsed Laser Centre (CLPU) is a new high-power laser facility for users. Its main system...
This theoretical and numerical thesis is devoted to electron acceleration from the interaction betwe...
Acceleration of ions from ultrathin foils irradiated by intense circularly polarized laser pulses is...
We consider the Directed Coulomb Explosion regime of ion acceleration from ultra-thin double layer (...
Three-dimensional "particle in cell" simulations show that a quasistatic magnetic field can be gener...
Abstract Radiation Pressure Acceleration (RPA) by circularly polarized laser pulses is emerging as...
A megagauss quasistatic axial magnetic field can be produced from the interaction of an intense lase...
The acceleration of ions in the interaction of high intensity laser pulses with overdense plasmas is...
Using plasma mirror injection we demonstrate, both analytically and numerically, that a circularly p...
The effects of laser-pulse polarization on the generation of an electrostatic shock in an overdense ...
A direct comparison of the properties of electron beam generated by antiparallel circularly polarize...
Magnetized high energy density physics offers new opportunities for observing magnetic field-related...
The acceleration of ions from ultrathin (10-100 nm) carbon foils has been investigated using intense...
Pulse shaping of circularly polarized laser pulses in nonuniform overdense plasmas are investigated ...
We investigated ion acceleration by an electrostatic shock in an exploded target irradiated by an ul...
The Spanish Pulsed Laser Centre (CLPU) is a new high-power laser facility for users. Its main system...
This theoretical and numerical thesis is devoted to electron acceleration from the interaction betwe...
Acceleration of ions from ultrathin foils irradiated by intense circularly polarized laser pulses is...
We consider the Directed Coulomb Explosion regime of ion acceleration from ultra-thin double layer (...