In this paper, we compare the 10 kW-Upgrade experiment at the Thomas Jefferson National Accelerator Facility in Newport News, VA, with numerical simulations using the MEDUSA code. MEDUSA is a three-dimensional FEL simulation code that is capable of treating both amplifiers and oscillators in both the steady-state and time-dependent regimes. MEDUSA employs a Gaussian modal expansion, and treats oscillators by decomposing the modal representation at the exit of the wiggler into the vacuum Gaussian modes of the resonator and then analytically determining the propagation of these vacuum resonator modes through the resonator back to the entrance of the wiggler in synchronism with the next electron bunch. The bunch length in the experiment is of ...
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...
An analysis of the free electron laser (FEL) oscillator startup problem is presented. The model is s...
We describe a procedure for the simulation of free-electron-laser (FEL) oscillators. The simulation ...
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...
We present results of Integrated Numerical Experiment (INEX) simulations of the performance of a 1-m...
Free-electron lasers (FELs) have been designed to operate over virtually the entire electromagnetic ...
The Free Electron Laser (FEL) is a potential solution for the U.S. Navy's anti-ship missile point de...
As the Jefferson Lab Free Electron Laser steadily approaches its goal of producing 1 kW of IR radiat...
This thesis describes an unaveraged 3D mathematical model and parallel code of the free electron las...
Simulation codes modeling the interaction of electrons with an optical field inside an undulator are...
The standing-wave free-electron laser (FEL) differs from a conventional linear-wiggler microwave FEL...
Advances in numerical methods for free-electron-laser (FEL) simulation under wiggler period averagin...
A simplified one-dimensional theoretical model for free-electron laser oscillator (FELO) calculation...
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...
An analysis of the free electron laser (FEL) oscillator startup problem is presented. The model is s...
We describe a procedure for the simulation of free-electron-laser (FEL) oscillators. The simulation ...
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...
We present results of Integrated Numerical Experiment (INEX) simulations of the performance of a 1-m...
Free-electron lasers (FELs) have been designed to operate over virtually the entire electromagnetic ...
The Free Electron Laser (FEL) is a potential solution for the U.S. Navy's anti-ship missile point de...
As the Jefferson Lab Free Electron Laser steadily approaches its goal of producing 1 kW of IR radiat...
This thesis describes an unaveraged 3D mathematical model and parallel code of the free electron las...
Simulation codes modeling the interaction of electrons with an optical field inside an undulator are...
The standing-wave free-electron laser (FEL) differs from a conventional linear-wiggler microwave FEL...
Advances in numerical methods for free-electron-laser (FEL) simulation under wiggler period averagin...
A simplified one-dimensional theoretical model for free-electron laser oscillator (FELO) calculation...
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...
An analysis of the free electron laser (FEL) oscillator startup problem is presented. The model is s...