The interaction between energetic electrons and a circularly polarized laser pulse inside an ion channel is studied. Laser radiation can be resonantly absorbed by electrons executing betatron oscillations in the ion channel and absorbing angular momentum from the laser. The absorbed angular momentum manifests itself as a strong axial magnetic field (inverse Faraday effect). The magnitude of this magnetic field is calculated and related to the amount of the absorbed energy. Absorbed energy and generated magnetic field are estimated for the small and large energy gain regimes. Qualitative comparisons with recent experiments are also made
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
With the advent of petawatt-class laser facilities, laser intensities reach unprecedented levels ena...
Interaction between energetic electrons and a circularly polarized laser pulse in a relativistic pla...
Laser-induced acceleration of an electron injected initially at an angle to the direction of a circu...
In addition to the ponderomotive acceleration of highly relativistic electrons at interaction of ver...
Magnetized high energy density physics offers new opportunities for observing magnetic field-related...
Magnetized high energy density physics offers new opportunities for observing magnetic field-related...
Electron acceleration and short-wavelength radiation generation by an intense, short, linearly polar...
The authors consider the interaction of subpicosecond relativistically strong short laser pulses wit...
We present a relativistic single particle simulation of vacuum acceleration of an electron by a high...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
The propagation of left-hand (LH-) and right-hand (RH-) circularly polarized (CP) lasers and the acc...
We examine the electron acceleration by tightly focused radially polarized laser beam in a preformed...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
With the advent of petawatt-class laser facilities, laser intensities reach unprecedented levels ena...
Interaction between energetic electrons and a circularly polarized laser pulse in a relativistic pla...
Laser-induced acceleration of an electron injected initially at an angle to the direction of a circu...
In addition to the ponderomotive acceleration of highly relativistic electrons at interaction of ver...
Magnetized high energy density physics offers new opportunities for observing magnetic field-related...
Magnetized high energy density physics offers new opportunities for observing magnetic field-related...
Electron acceleration and short-wavelength radiation generation by an intense, short, linearly polar...
The authors consider the interaction of subpicosecond relativistically strong short laser pulses wit...
We present a relativistic single particle simulation of vacuum acceleration of an electron by a high...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
The propagation of left-hand (LH-) and right-hand (RH-) circularly polarized (CP) lasers and the acc...
We examine the electron acceleration by tightly focused radially polarized laser beam in a preformed...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
International audienceMagnetic fields in excess of 7 MG have been measured with high spatial and tem...
With the advent of petawatt-class laser facilities, laser intensities reach unprecedented levels ena...