The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund, Sweden. The facility is made up of two storage rings, at 3 GeV and 1.5 GeV, respectively, and a linear accelerator, serving as a full-energy injector for the rings as well as a driver for the Short-Pulse Facility (SPF) located downstream of the extraction point to the 3 GeV ring. Recently, as part of the Soft X-ray Laser (SXL) project, a design study towards using the linac as a soft X-ray free-electron laser (FEL) driver was started. Part of the study is the design and commissioning of a diagnostics beamline based on a Transverse Deflecting Structure (TDS). Moreover, the PlasMAX collaboration is working towards using the MAX IV linac also ...
The design of the 3 GeV linac for the MAX IV facility was done to provide the ability to host a futu...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. The accele...
Within research, synchrotron radiation is a highly useful probe for the study of materials, their pr...
The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund...
A Soft X-ray Laser project (the SXL) aiming to produce FEL radiation in the range of 1 to 5 nm is cu...
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...
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 (SXL) beamline utilising FEL technology is being designed for the Short Pulse Fac...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
The proposed MAX IV facility at MAX-lab, Lund University is presented. The project consists of two s...
The MAX IV LINAC operates both as a full-energy injector for two electron storage rings, and as a dr...
MAX IV Laboratory is a Swedish national synchrotron radiation facility that comprises three accelera...
The SXL (Soft X-ray Laser) project developed a conceptual design for a soft X-ray Free Electron Lase...
The design of the 3 GeV linac for the MAX IV facility was done to provide the ability to host a futu...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. The accele...
Within research, synchrotron radiation is a highly useful probe for the study of materials, their pr...
The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund...
A Soft X-ray Laser project (the SXL) aiming to produce FEL radiation in the range of 1 to 5 nm is cu...
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...
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 (SXL) beamline utilising FEL technology is being designed for the Short Pulse Fac...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
The proposed MAX IV facility at MAX-lab, Lund University is presented. The project consists of two s...
The MAX IV LINAC operates both as a full-energy injector for two electron storage rings, and as a dr...
MAX IV Laboratory is a Swedish national synchrotron radiation facility that comprises three accelera...
The SXL (Soft X-ray Laser) project developed a conceptual design for a soft X-ray Free Electron Lase...
The design of the 3 GeV linac for the MAX IV facility was done to provide the ability to host a futu...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. The accele...
Within research, synchrotron radiation is a highly useful probe for the study of materials, their pr...