Recent studies of the performance of radio-frequency (rf) copper cavities operated at cryogenic temperatures have shown a dramatic increase in the maximum achievable surface electric field. We propose to exploit this development to enable a new generation of photoinjectors operated at cryogenic temperatures that may attain, through enhancement of the launch field at the photocathode, a significant increase in five-dimensional electron beam brightness. We present detailed studies of the beam dynamics associated with such a system, by examining an S-band photoinjector operated at 250 MV/m peak electric field that reaches normalized emittances in the 40 nm-rad range at charges (100–200 pC) suitable for use in a hard x-ray free-electron laser ...
In 2009 the first hard X-ray Free Electron Laser (XFEL) has become operational – LCLS at Stanford Un...
A key technology issue on the path to high-power FEL operation is the demonstration of reliable, hig...
The project is under way to develop a key enabling technology for high-power CW FEL: an RF photoinje...
Recent studies of the performance of radio-frequency (rf) copper cavities operated at cryogenic temp...
In the field of beam physics, two frontier topics have taken center stage due to their potential to ...
In the field of beam physics, two frontier topics have taken center stage due to their potential to ...
The operation of Ultrafast Electron Diffractometers (UEDs) and Free-Electron Lasers (FELs) relies on...
The operation of Ultrafast Electron Diffractometers (UEDs) and Free-Electron Lasers (FELs) relies on...
The development of high brightness electron sources can enable an increase in performance and reduct...
Future light sources based on seeded free electron lasers (FEL) have the potential to increase the s...
Short period, high field undulators can enable short wavelength free electron lasers (FELs) at low b...
Synchrotron x-ray radiation sources have revolutionized many areas of science from elucidating the a...
Short period, high field undulators can enable short wavelength free electron lasers FELs at low b...
A key technology issue on the path to high-power FEL operation is the demonstration of reliable, hig...
In 2009 the first hard X-ray Free Electron Laser (XFEL) has become operational – LCLS at Stanford Un...
In 2009 the first hard X-ray Free Electron Laser (XFEL) has become operational – LCLS at Stanford Un...
A key technology issue on the path to high-power FEL operation is the demonstration of reliable, hig...
The project is under way to develop a key enabling technology for high-power CW FEL: an RF photoinje...
Recent studies of the performance of radio-frequency (rf) copper cavities operated at cryogenic temp...
In the field of beam physics, two frontier topics have taken center stage due to their potential to ...
In the field of beam physics, two frontier topics have taken center stage due to their potential to ...
The operation of Ultrafast Electron Diffractometers (UEDs) and Free-Electron Lasers (FELs) relies on...
The operation of Ultrafast Electron Diffractometers (UEDs) and Free-Electron Lasers (FELs) relies on...
The development of high brightness electron sources can enable an increase in performance and reduct...
Future light sources based on seeded free electron lasers (FEL) have the potential to increase the s...
Short period, high field undulators can enable short wavelength free electron lasers (FELs) at low b...
Synchrotron x-ray radiation sources have revolutionized many areas of science from elucidating the a...
Short period, high field undulators can enable short wavelength free electron lasers FELs at low b...
A key technology issue on the path to high-power FEL operation is the demonstration of reliable, hig...
In 2009 the first hard X-ray Free Electron Laser (XFEL) has become operational – LCLS at Stanford Un...
In 2009 the first hard X-ray Free Electron Laser (XFEL) has become operational – LCLS at Stanford Un...
A key technology issue on the path to high-power FEL operation is the demonstration of reliable, hig...
The project is under way to develop a key enabling technology for high-power CW FEL: an RF photoinje...