A Soft X-ray Laser (SXL) beamline utilising FEL technology is being designed for the Short Pulse Facility (SPF) at the MAX IV Laboratory. A conceptual design study has been started following on the scientific case already prepared in collaboration between several Swedish Universities and driven by a strong (Swedish) user demand. The baseline goal of the SXL beamline is to generate intense and short pulses in the range 1-5 nm (0.2-1 keV). The system is building on the MAX IV linac system, already today providing 100 fs 3 GeV and pulses compressed to 100 fs for other applications within the SPF. As a special feature we foresee a variety of pump-probe capabilities
The design of the 3 GeV linac for the MAX IV facility was done to provide the ability to host a futu...
The proposed MAX IV facility at MAX-lab, Lund University is presented. The project consists of two s...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
A Soft X-ray Laser (SXL) beamline utilising FEL technology is being designed for the Short Pulse Fac...
A Soft X-ray Laser (SXL) beamline utilising FEL technology is being designed for the Short Pulse Fac...
A Soft X-ray Laser project (the SXL) aiming to produce FEL radiation in the range of 1 to 5 nm is cu...
The SXL (Soft X-ray Laser) project developed a conceptual design for a soft X-ray Free Electron Lase...
In this paper the design of the free-electron laser (FEL) in the SXL (Soft X-ray Laser) project at t...
In this paper the design of the free-electron laser (FEL) in the SXL (Soft X-ray Laser) project at t...
A Soft X-ray FEL (the SXL) is currently being designed at the MAX IV Laboratory. In the work to adap...
The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund...
The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund...
At the MAX-IV lab in Lund, there is a current goal to build a new soft X-Ray laser. The beam will be...
At the MAX-IV lab in Lund, there is a current goal to build a new soft X-Ray laser. The beam will be...
The MAX IV LINAC operates both as a full-energy injector for two electron storage rings, and as a dr...
The design of the 3 GeV linac for the MAX IV facility was done to provide the ability to host a futu...
The proposed MAX IV facility at MAX-lab, Lund University is presented. The project consists of two s...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
A Soft X-ray Laser (SXL) beamline utilising FEL technology is being designed for the Short Pulse Fac...
A Soft X-ray Laser (SXL) beamline utilising FEL technology is being designed for the Short Pulse Fac...
A Soft X-ray Laser project (the SXL) aiming to produce FEL radiation in the range of 1 to 5 nm is cu...
The SXL (Soft X-ray Laser) project developed a conceptual design for a soft X-ray Free Electron Lase...
In this paper the design of the free-electron laser (FEL) in the SXL (Soft X-ray Laser) project at t...
In this paper the design of the free-electron laser (FEL) in the SXL (Soft X-ray Laser) project at t...
A Soft X-ray FEL (the SXL) is currently being designed at the MAX IV Laboratory. In the work to adap...
The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund...
The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund...
At the MAX-IV lab in Lund, there is a current goal to build a new soft X-Ray laser. The beam will be...
At the MAX-IV lab in Lund, there is a current goal to build a new soft X-Ray laser. The beam will be...
The MAX IV LINAC operates both as a full-energy injector for two electron storage rings, and as a dr...
The design of the 3 GeV linac for the MAX IV facility was done to provide the ability to host a futu...
The proposed MAX IV facility at MAX-lab, Lund University is presented. The project consists of two s...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...