The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing laserplasma accelerators for the production of ultra-short electron bunches with subsequent generation of high brilliance, short-wavelength radiation pulses. Ti:sapphire laser systems with peak power in the range 20-200 TW are coupled into mm- and cm-scale plasma channels in order to generate electron beams of energy 50-800 MeV. Ultra-short radiation pulses generated in these compact sources will be of tremendous benefit for time-resolved studies in a wide range of applications across many branches of science. Primary mechanisms of radiation production are (i) betatron radiation due to transverse oscillations of the highly relativistic electr...
Recent progress in developing laser-plasma accelerators is raising the possibility of a compact cohe...
Plasma waves excited by intense laser beams can be harnessed to produce femtosecond duration bunches...
Laser-driven plasma wakefield accelerators (LWFAs) based on table-top terawatt lasers have the poten...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
The Advanced Laser–Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
Electron beam based radiation sources provide electromagnetic radiation for countless applications....
Recent progress in developing laser-plasma accelerators is raising the possibility of a compact cohe...
Recent progress in developing laser-plasma accelerators is raising the possibility of a compact cohe...
Plasma waves excited by intense laser beams can be harnessed to produce femtosecond duration bunches...
Laser-driven plasma wakefield accelerators (LWFAs) based on table-top terawatt lasers have the poten...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
The Advanced Laser–Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
Electron beam based radiation sources provide electromagnetic radiation for countless applications....
Recent progress in developing laser-plasma accelerators is raising the possibility of a compact cohe...
Recent progress in developing laser-plasma accelerators is raising the possibility of a compact cohe...
Plasma waves excited by intense laser beams can be harnessed to produce femtosecond duration bunches...
Laser-driven plasma wakefield accelerators (LWFAs) based on table-top terawatt lasers have the poten...