The beam transport system for the CEBAF Industrial FEL includes a two-pass transport of the beam with acceleration from injector to wiggler, followed by energy recovery transport from wiggler to dump. From that context, the authors discuss the general problem of multi-pass energy-recovery beam transport for FELs. Tunable, nearly-isochronous, large-momentum-acceptance transport systems are required. The entire transport must preserve beam quality, particularly in the acceleration transport to the wiggler, and have low losses throughout the entire system. Various possible designs are presented, and results of dynamic analyses are discussed
Jefferson Lab is building a free-electron laser (FEL) to produce continuous-wave (cw), kW-level ligh...
Beam from the 45 MeV CEBAF injector linac can be used to drive a high-power infrared (IR) free elect...
The energy-recovery experiments are planned at the JAERI-FEL facility for increasing lasing power. T...
We have developed a conceptual design for an industrial-use kilowatt UV and IR FEL driven by a recir...
The use of recirculation in linear accelerator designs requires beam transport systems that will not...
We discuss the use of multipass recirculation and energy recovery in CW SRF drivers for short wavele...
A SRF linac based free electron laser user facility is under developed at Peking University. Energy ...
Longitudinal phase space management in an energy recovering FEL has been discussed in some detail el...
A SRF linac based free electron laser user facility is under developed at Peking University. Energy ...
Recirculating, energy-recovering linacs can be used as driver accelerators for high power FELs. Inst...
Recirculating, energy-recovering linacs can be used as driver accelerators for high power FELs (free...
Pohang Accelerator Laboratory (PAL), which is running 3rd generation light source, is planning to co...
Jefferson Lab is building a free-electron laser (FEL) to produce continuous-wave (cw), kW-level ligh...
The Thomas Jefferson National Accelerator Facility (Jefferson Lab) has been funded by the US Navy to...
The design of a 6 and 12 MeV electrostatic-accelerator FEL is presented. The system will use recircu...
Jefferson Lab is building a free-electron laser (FEL) to produce continuous-wave (cw), kW-level ligh...
Beam from the 45 MeV CEBAF injector linac can be used to drive a high-power infrared (IR) free elect...
The energy-recovery experiments are planned at the JAERI-FEL facility for increasing lasing power. T...
We have developed a conceptual design for an industrial-use kilowatt UV and IR FEL driven by a recir...
The use of recirculation in linear accelerator designs requires beam transport systems that will not...
We discuss the use of multipass recirculation and energy recovery in CW SRF drivers for short wavele...
A SRF linac based free electron laser user facility is under developed at Peking University. Energy ...
Longitudinal phase space management in an energy recovering FEL has been discussed in some detail el...
A SRF linac based free electron laser user facility is under developed at Peking University. Energy ...
Recirculating, energy-recovering linacs can be used as driver accelerators for high power FELs. Inst...
Recirculating, energy-recovering linacs can be used as driver accelerators for high power FELs (free...
Pohang Accelerator Laboratory (PAL), which is running 3rd generation light source, is planning to co...
Jefferson Lab is building a free-electron laser (FEL) to produce continuous-wave (cw), kW-level ligh...
The Thomas Jefferson National Accelerator Facility (Jefferson Lab) has been funded by the US Navy to...
The design of a 6 and 12 MeV electrostatic-accelerator FEL is presented. The system will use recircu...
Jefferson Lab is building a free-electron laser (FEL) to produce continuous-wave (cw), kW-level ligh...
Beam from the 45 MeV CEBAF injector linac can be used to drive a high-power infrared (IR) free elect...
The energy-recovery experiments are planned at the JAERI-FEL facility for increasing lasing power. T...