The MAX-IV storage rings are being studied at MAX-Lab. In this paper, we present the magnetic measurements of the soft bending magnet prototype. The magnet is introduced in the matching section of the 3 GeV storage ring lattice [Tarawneh, Proceedings of European Particle Accelerator Conference, July 2004, Lucerne, Switzerland] mainly to reduce the power of the synchrotron radiation hitting the upstream superconducting insertion devices
International audienceThe proposed PETRA IV electron storage ring that will replace DESY’s flagship ...
International audienceCombined function magnets with dipole and quadrupole components were designed ...
High gradient quadrupoles are key components for the coming generation of storage ring based light s...
The future 3 GeV MAX-IV storage ring at MAX-Lab will be a low emittance storage ring for the product...
The lattice for the future MAX-IV storage rings at MAX-Lab has been studied. The MAX IV facility con...
The lattice for the future MAX-IV storage rings at MAX-Lab has been studied. The MAX IV facility con...
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 3 GeV storage ring, currently under construction, pursues the goal of low electron beam e...
The magnet design of the MAX IV 3 GeV storage ring replaces the conventional support girder + discre...
A 1.5 GeV third generation storage ring optimised for the VUV and soft X-ray spectral region is curr...
COSY-Jiilich [I] is a synchrotron and storage ring accelerating protons from 40 MeV injection energy...
High intensity, high energy X-rays for use in protein crystallography, nano-machining and medical ap...
One of the primary goals of the 700MeV MAX III synchrotron radiation source is to test and gain expe...
International audienceHigh gradient quadrupoles are key components for the coming generation of stor...
International audienceThe proposed PETRA IV electron storage ring that will replace DESY’s flagship ...
International audienceCombined function magnets with dipole and quadrupole components were designed ...
High gradient quadrupoles are key components for the coming generation of storage ring based light s...
The future 3 GeV MAX-IV storage ring at MAX-Lab will be a low emittance storage ring for the product...
The lattice for the future MAX-IV storage rings at MAX-Lab has been studied. The MAX IV facility con...
The lattice for the future MAX-IV storage rings at MAX-Lab has been studied. The MAX IV facility con...
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 3 GeV storage ring, currently under construction, pursues the goal of low electron beam e...
The magnet design of the MAX IV 3 GeV storage ring replaces the conventional support girder + discre...
A 1.5 GeV third generation storage ring optimised for the VUV and soft X-ray spectral region is curr...
COSY-Jiilich [I] is a synchrotron and storage ring accelerating protons from 40 MeV injection energy...
High intensity, high energy X-rays for use in protein crystallography, nano-machining and medical ap...
One of the primary goals of the 700MeV MAX III synchrotron radiation source is to test and gain expe...
International audienceHigh gradient quadrupoles are key components for the coming generation of stor...
International audienceThe proposed PETRA IV electron storage ring that will replace DESY’s flagship ...
International audienceCombined function magnets with dipole and quadrupole components were designed ...
High gradient quadrupoles are key components for the coming generation of storage ring based light s...