We describe a procedure for the simulation of free-electron-laser (FEL) oscillators. The simulation uses a combination of the MEDUSA simulation code for the FEL interaction and the OPC code to model the resonator. The simulations are compared with recent observations of the oscillator at the Thomas Jefferson National Accelerator Facility and are in substantial agreement with the experiment
During the last year we have been benchmarking FEL oscillator simulation codes against the measured ...
Free Electron Lasers (FELs) are a solution for providing intense, coherent and bright radiation in t...
Abstract TDA3D is a widely distributed and often used Free Electron Laser (FEL) simulation code. W...
In this paper, we compare the 10 kW-Upgrade experiment at the Thomas Jefferson National Accelerator ...
Time-dependent free-electron laser simulations use a variety of techniques. Particle-in-cell codes h...
Minerva is a simulation code that models the interaction of electrons with an optical field inside a...
Free-electron lasers (FELs) have been designed to operate over virtually the entire electromagnetic ...
Modeling free-electron laser (FEL) oscillators requires calculation of both the light-beam interacti...
A three-dimensional, space-frequency model for simulation of interaction in free-electron lasers (FE...
This thesis reports research carried out to develop a non-averaged 3D simulation code written using ...
An unaveraged 3D model of the free electron laser (FEL) is presented which is capable of modelling e...
22603 Hamburg, Germany Numerical simulation codes are basic tools for designing Free Electron Lasers...
Modeling and simulation have proven invaluable to the design of various systems and planning of many...
This thesis describes an unaveraged 3D mathematical model and parallel code of the free electron las...
Free Electron Lasers (FELs) are a solution for providing intense, coherent and bright radiation in t...
During the last year we have been benchmarking FEL oscillator simulation codes against the measured ...
Free Electron Lasers (FELs) are a solution for providing intense, coherent and bright radiation in t...
Abstract TDA3D is a widely distributed and often used Free Electron Laser (FEL) simulation code. W...
In this paper, we compare the 10 kW-Upgrade experiment at the Thomas Jefferson National Accelerator ...
Time-dependent free-electron laser simulations use a variety of techniques. Particle-in-cell codes h...
Minerva is a simulation code that models the interaction of electrons with an optical field inside a...
Free-electron lasers (FELs) have been designed to operate over virtually the entire electromagnetic ...
Modeling free-electron laser (FEL) oscillators requires calculation of both the light-beam interacti...
A three-dimensional, space-frequency model for simulation of interaction in free-electron lasers (FE...
This thesis reports research carried out to develop a non-averaged 3D simulation code written using ...
An unaveraged 3D model of the free electron laser (FEL) is presented which is capable of modelling e...
22603 Hamburg, Germany Numerical simulation codes are basic tools for designing Free Electron Lasers...
Modeling and simulation have proven invaluable to the design of various systems and planning of many...
This thesis describes an unaveraged 3D mathematical model and parallel code of the free electron las...
Free Electron Lasers (FELs) are a solution for providing intense, coherent and bright radiation in t...
During the last year we have been benchmarking FEL oscillator simulation codes against the measured ...
Free Electron Lasers (FELs) are a solution for providing intense, coherent and bright radiation in t...
Abstract TDA3D is a widely distributed and often used Free Electron Laser (FEL) simulation code. W...