X-ray free-electron lasers (XFELs) deliver pulses of coherent X-rays on the femtosecond time scale, with potentially high repetition rates. While XFELs provide high peak intensities, both the intensity and the centroid of the beam fluctuate strongly on a pulse-to-pulse basis, motivating high-rate beam diagnostics that operate over a large dynamic range. The fast drift velocity, low X-ray absorption and high radiation tolerance properties of chemical vapour deposition diamonds make these crystals a promising candidate material for developing a fast (multi-GHz) pass-through diagnostic for the next generation of XFELs. A new approach to the design of a diamond sensor signal path is presented, along with associated characterization studies perf...
Diamond monocrystalline detectors were used to characterize radiation and particle emission from las...
Secondary electron cascades were measured in high purity single-crystalline chemical vapor depositio...
National audienceBackground: X-ray position sensitive detector is indispensable for beamlines...
Simultaneous photon-beam position and intensity monitoring is becoming of increasing importance for ...
New generation Synchrotron Radiation (SR) sources and Free Electron Lasers (FEL) require novel conce...
Diamond is a promising material for the production of semitransparent in situ photon beam monitors w...
Diamond is an outstanding material for the production of semitransparent in situ photon beam monitor...
The paper reports about the use of single-crystal Chemical Vapour Deposited (CVD) diamonds as radiat...
Diamond is a good candidate to replace silicon as sensor material in the innermost layer of a tracki...
One of the goals of modern dynamic radiotherapy treatments is to deliver high-dose values in the sho...
The European X-ray Free Electron Laser (EuXFEL) offers intense, coherent femtosecond pulses, resulti...
International audienceHighlights• Diamond double stripped beam monitor prototypes for hadrontherapy ...
Tracking detectors have become an important ingredient in high-energy physics experiments. In order ...
Diamond monocrystalline detectors were used to characterize radiation and particle emission from las...
Secondary electron cascades were measured in high purity single-crystalline chemical vapor depositio...
National audienceBackground: X-ray position sensitive detector is indispensable for beamlines...
Simultaneous photon-beam position and intensity monitoring is becoming of increasing importance for ...
New generation Synchrotron Radiation (SR) sources and Free Electron Lasers (FEL) require novel conce...
Diamond is a promising material for the production of semitransparent in situ photon beam monitors w...
Diamond is an outstanding material for the production of semitransparent in situ photon beam monitor...
The paper reports about the use of single-crystal Chemical Vapour Deposited (CVD) diamonds as radiat...
Diamond is a good candidate to replace silicon as sensor material in the innermost layer of a tracki...
One of the goals of modern dynamic radiotherapy treatments is to deliver high-dose values in the sho...
The European X-ray Free Electron Laser (EuXFEL) offers intense, coherent femtosecond pulses, resulti...
International audienceHighlights• Diamond double stripped beam monitor prototypes for hadrontherapy ...
Tracking detectors have become an important ingredient in high-energy physics experiments. In order ...
Diamond monocrystalline detectors were used to characterize radiation and particle emission from las...
Secondary electron cascades were measured in high purity single-crystalline chemical vapor depositio...
National audienceBackground: X-ray position sensitive detector is indispensable for beamlines...