A numerical algorithm for simulating electron beam shot noise in free electron lasers (FELs) is presented. Shot noise is a source of spontaneous emission that may be amplified in the self-amplified spontaneous emission regime of operation. This regime is of great importance to XUV and x-ray FELs where the spontaneous emission is currently the only effective source available for amplification. The algorithm uses a quasiuniform phase-space distribution of appropriately charge weighted macroparticles. The statistical properties of the macroparticles are derived directly from the temporal Poisson statistical properties of the real electron distribution. Unlike previous algorithms, ours does not rely upon any averaging over a resonant radiation ...
The emerging concept of `beam by design' in free-electron laser (FEL) accelerator physics aims for a...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
Shot noise can affect the performance of free-electron lasers (FELs) by driving instabilities (e.g.,...
A numerical algorithm for simulating electron beam shot noise in free electron lasers (FELs) is pres...
A numerical algorithm for simulating electron beam shot noise in free electron lasers (FELs) is pres...
For a planar free electron laser (FEL) configuration we study self-amplified coherent spontaneous em...
An efficient numerical method allows to generate statistically representative sets of pulse shapes o...
An efficient numerical method allows to generate statistically representative sets of pulse shapes o...
We present a calculation of the shot noise to be used as initial condition for the electron-beam pha...
We present a calculation of the shot noise to be used as initial condition for the electron-beam pha...
A general numerical approach is described that allows obtaining model sets of temporal pulse shapes ...
A general numerical approach is described that allows obtaining model sets of temporal pulse shapes ...
A general numerical approach is described that allows obtaining model sets of temporal pulse shapes ...
Advances in numerical methods for free-electron-laser (FEL) simulation under wiggler period averagin...
Advances in numerical methods for free-electron-laser (FEL) simulation under wiggler period averagin...
The emerging concept of `beam by design' in free-electron laser (FEL) accelerator physics aims for a...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
Shot noise can affect the performance of free-electron lasers (FELs) by driving instabilities (e.g.,...
A numerical algorithm for simulating electron beam shot noise in free electron lasers (FELs) is pres...
A numerical algorithm for simulating electron beam shot noise in free electron lasers (FELs) is pres...
For a planar free electron laser (FEL) configuration we study self-amplified coherent spontaneous em...
An efficient numerical method allows to generate statistically representative sets of pulse shapes o...
An efficient numerical method allows to generate statistically representative sets of pulse shapes o...
We present a calculation of the shot noise to be used as initial condition for the electron-beam pha...
We present a calculation of the shot noise to be used as initial condition for the electron-beam pha...
A general numerical approach is described that allows obtaining model sets of temporal pulse shapes ...
A general numerical approach is described that allows obtaining model sets of temporal pulse shapes ...
A general numerical approach is described that allows obtaining model sets of temporal pulse shapes ...
Advances in numerical methods for free-electron-laser (FEL) simulation under wiggler period averagin...
Advances in numerical methods for free-electron-laser (FEL) simulation under wiggler period averagin...
The emerging concept of `beam by design' in free-electron laser (FEL) accelerator physics aims for a...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
Shot noise can affect the performance of free-electron lasers (FELs) by driving instabilities (e.g.,...