A semi-classical approach is used to calculate radiation emission in the collision of an electron with an intense focused laser pulse. The results are compared to predictions from the locally constant field and locally monochromatic approximations. It is found that simulations employing the semi-classical approach capture features in the energy spectra, such as subharmonics and bandwidth structure, which are beyond local approaches. The formation length is introduced as a diagnostic to select between approaches as the electron is propagated through the pulse
Vacuum scattering of electrons by an intense laser field is considered. This phenomenon is shown in ...
A detailed analysis of the process of two-photon emission by an electron scattered from a high-inten...
We consider the emission spectrum of high-energy electrons in an intense laser field. At high intens...
A semiclassical approach is used to calculate radiation emission in the collision of an electron wit...
Laser pulses traveling through a plasma can feature group velocities significantly differing from th...
Previous work on calculating energy spectra from Compton scattering events has either neglected cons...
Nonlinear effects are known to occur in Compton scattering light sources, when the laser normalized ...
We examine current methods of numerically implementing Compton scattering in the context of intense ...
Previous work on calculating energy spectra from Compton scattering events has either neglected cons...
The theoretical analysis of four fundamental laser-assisted non-linear scattering processes are summ...
The feasibility of generation of bright ultrashort gamma-ray pulses is demonstrated in the interacti...
The non-linear stage of the interaction between electron and light pulses is considered of a high-ga...
The non-linear stage of the interaction between electron and light pulses is considered of a high-ga...
This work is dedicated to the computation of emission spectra of an electron scattering off an ultra...
Emission of gamma rays by the processes of bremsstrahlung and inverse Compton scattering (CS) from i...
Vacuum scattering of electrons by an intense laser field is considered. This phenomenon is shown in ...
A detailed analysis of the process of two-photon emission by an electron scattered from a high-inten...
We consider the emission spectrum of high-energy electrons in an intense laser field. At high intens...
A semiclassical approach is used to calculate radiation emission in the collision of an electron wit...
Laser pulses traveling through a plasma can feature group velocities significantly differing from th...
Previous work on calculating energy spectra from Compton scattering events has either neglected cons...
Nonlinear effects are known to occur in Compton scattering light sources, when the laser normalized ...
We examine current methods of numerically implementing Compton scattering in the context of intense ...
Previous work on calculating energy spectra from Compton scattering events has either neglected cons...
The theoretical analysis of four fundamental laser-assisted non-linear scattering processes are summ...
The feasibility of generation of bright ultrashort gamma-ray pulses is demonstrated in the interacti...
The non-linear stage of the interaction between electron and light pulses is considered of a high-ga...
The non-linear stage of the interaction between electron and light pulses is considered of a high-ga...
This work is dedicated to the computation of emission spectra of an electron scattering off an ultra...
Emission of gamma rays by the processes of bremsstrahlung and inverse Compton scattering (CS) from i...
Vacuum scattering of electrons by an intense laser field is considered. This phenomenon is shown in ...
A detailed analysis of the process of two-photon emission by an electron scattered from a high-inten...
We consider the emission spectrum of high-energy electrons in an intense laser field. At high intens...