Time-resolved experimental techniques are increasingly abundant at storage ring facilities. Recent developments in accelerator technology and beamline instrumentation allow for simultaneous operation of high-intensity and timing-based experiments. The MAX IV facility is a state-of-the-art synchrotron light source in Lund, Sweden, that will come into operation in 2016. As many storage ring facilities are pursuing upgrade programs employing strong-focusing multibend achromats and passive harmonic cavities (HCs) in high-current operation, it is of broad interest to study the accelerator and instrumentation developments required to enable timing-based experiments at such machines. In particular, the use of hybrid filling modes combined with pul...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV. Both rings make use of...
The commissioning of the MAX IV synchrotron radiation facility in Lund marks the dawn of a new gener...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
Time-resolved experimental techniques are increasingly abundant at storage ring facilities. Recent d...
The MAX IV facility includes two storage rings, operated at 1.5 and 3 GeV energy, for the purpose of...
At synchrotron light storage rings there is demand for serving both high-brilliance and timing users...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV, which are both designe...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV, which are both designe...
A three-day workshop was held in Lund, Sweden, from March 25 to 27, 2015, with a focus on timing mod...
At many storage rings for synchrotron light production there is demand for serving both high-flux an...
Within research, synchrotron radiation is a highly useful probe for the study of materials, their pr...
MAX IV will be Sweden’s next-generation high-performance synchrotron radiation source. The project h...
Abstract in Undetermined The MAX IV facility presently under construction will include two storage r...
At synchrotron light storage rings there is demand for serving high-brilliance users requesting mult...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV. Both rings make use of...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV. Both rings make use of...
The commissioning of the MAX IV synchrotron radiation facility in Lund marks the dawn of a new gener...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...
Time-resolved experimental techniques are increasingly abundant at storage ring facilities. Recent d...
The MAX IV facility includes two storage rings, operated at 1.5 and 3 GeV energy, for the purpose of...
At synchrotron light storage rings there is demand for serving both high-brilliance and timing users...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV, which are both designe...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV, which are both designe...
A three-day workshop was held in Lund, Sweden, from March 25 to 27, 2015, with a focus on timing mod...
At many storage rings for synchrotron light production there is demand for serving both high-flux an...
Within research, synchrotron radiation is a highly useful probe for the study of materials, their pr...
MAX IV will be Sweden’s next-generation high-performance synchrotron radiation source. The project h...
Abstract in Undetermined The MAX IV facility presently under construction will include two storage r...
At synchrotron light storage rings there is demand for serving high-brilliance users requesting mult...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV. Both rings make use of...
The MAX IV facility includes two storage rings operated at 1.5 GeV and 3 GeV. Both rings make use of...
The commissioning of the MAX IV synchrotron radiation facility in Lund marks the dawn of a new gener...
The MAX IV synchrotron radiation facility is currently being constructed in Lund, Sweden. It consist...