The MAX IV facility, currently under construction in Lund, Sweden, features two electron storage rings operated at 3 GeV and 1.5 GeV and optimized for the hard X-ray and soft X-ray/VUV spectral ranges, respectively. A 3 GeV linear accelerator serves as a full-energy injector into both rings as well as a driver for a short-pulse facility, in which undulators produce X-ray pulses as short as 100 fs. The 3 GeV ring employs a multibend achromat (MBA) lattice to achieve, in a relatively short circumference of 528 m, a bare lattice emittance of 0.33 nm rad, which reduces to 0.2 nm rad as insertion devices are added. The engineering implementation of the MBA lattice raises several technological problems. The large number of strong magnets per achr...
The proposed MAX IV facility is meant as a successor to the existing MAX-lab. The accelerator part w...
The proposed MAX IV facility is meant as a successor to the existing MAX-lab. The accelerator part w...
The lattice for the future MAX-IV storage rings at MAX-Lab has been studied. The MAX IV facility con...
two electron storage rings operated at 3 GeVand 1.5 GeVand optimized for the hard X-ray and soft X-r...
The MAX IV facility, currently under construction in Lund, Sweden, features two electron storage rin...
The MAX IV facility, currently under construction in Lund, Sweden, features two electron storage rin...
The MAX IV 3 GeV electron storage ring in Lund, Sweden, is the first of a new generation of light so...
The MAX IV 3 GeV electron storage ring in Lund, Sweden, is the first of a new generation of light so...
A successor of the present MAX facility is currently being studied. This proposed MAX IV facility wi...
A successor of the present MAX facility is currently being studied. This proposed MAX IV facility wi...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
The first of the so-called diffraction-limited storage rings (DLSRs), MAX I V, has now gone into ope...
The first of the so-called diffraction-limited storage rings (DLSRs), MAX I V, has now gone into ope...
In 2009 the MAX IV facility was granted funding by Swedish authorities. Construction of the facility...
Within research, synchrotron radiation is a highly useful probe for the study of materials, their pr...
The proposed MAX IV facility is meant as a successor to the existing MAX-lab. The accelerator part w...
The proposed MAX IV facility is meant as a successor to the existing MAX-lab. The accelerator part w...
The lattice for the future MAX-IV storage rings at MAX-Lab has been studied. The MAX IV facility con...
two electron storage rings operated at 3 GeVand 1.5 GeVand optimized for the hard X-ray and soft X-r...
The MAX IV facility, currently under construction in Lund, Sweden, features two electron storage rin...
The MAX IV facility, currently under construction in Lund, Sweden, features two electron storage rin...
The MAX IV 3 GeV electron storage ring in Lund, Sweden, is the first of a new generation of light so...
The MAX IV 3 GeV electron storage ring in Lund, Sweden, is the first of a new generation of light so...
A successor of the present MAX facility is currently being studied. This proposed MAX IV facility wi...
A successor of the present MAX facility is currently being studied. This proposed MAX IV facility wi...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
The first of the so-called diffraction-limited storage rings (DLSRs), MAX I V, has now gone into ope...
The first of the so-called diffraction-limited storage rings (DLSRs), MAX I V, has now gone into ope...
In 2009 the MAX IV facility was granted funding by Swedish authorities. Construction of the facility...
Within research, synchrotron radiation is a highly useful probe for the study of materials, their pr...
The proposed MAX IV facility is meant as a successor to the existing MAX-lab. The accelerator part w...
The proposed MAX IV facility is meant as a successor to the existing MAX-lab. The accelerator part w...
The lattice for the future MAX-IV storage rings at MAX-Lab has been studied. The MAX IV facility con...