High-quality electron beams, with a few 109 electrons within a few percent of the same energy above 80 MeV, were produced in a laser wakefield accelerator by matching the acceleration length to the length over which electrons were accelerated and outran (dephased from) the wake. A plasma channel guided the drive laser over long distances, resulting in production of the high-energy, high-quality beams. Unchanneled experiments varying the length of the target plasma indicated that the high-quality bunches are produced near the dephasing length and demonstrated that channel guiding was more stable and efficient than relativistic self-guiding. Consistent with these data, particle-in-cell simulations indicate production of high-quality electron ...
Very stable, high quality electron beams (current similar to 10 kA, energy spread < 1%, emittance si...
Laser wakefield accelerators can produce electric fields of order 10-100 GV/m, suitable for accelera...
Electron beams with hundreds of picoCoulombs of charge in percent energy spread at above 80 MeV, an...
High-quality electron beams, with a few 109 electrons within a few percent of the same energy above ...
High quality electron beams, with a few 10^9 electrons within a few percent of the same energy above...
High quality electron beams with hundreds of picoCoulombs ofcharge inpercent energy spread above 80 ...
High quality electron beams (several 109 electrons above 80 MeV energy with percent energy spread an...
Experiments at the LOASIS laboratory of LBNL recentlydemonstrated production of 100 MeV electron bea...
Experiments at the LOASIS laboratory of LBNL havedemonstrated production of 100 MeV to 1 GeV electro...
Electron bunches produced in self-modulated laser wakefield experiments usually have a broad energy ...
A laser driven wakefield accelerator has been tuned to produce high energy electron bunches with lo...
The electric field in laser-driven plasma wakefield acceleration is orders of magnitude higher than ...
International audienceAn important limit for energy gain in laser-plasma wakefield accelerators is t...
The phase velocity of the wakefield of a laser wakefield accelerator can, theoretically, be manipula...
Electron beams with hundreds of picoCoulombs of charge in percent energy spread at above 80 MeV, and...
Very stable, high quality electron beams (current similar to 10 kA, energy spread < 1%, emittance si...
Laser wakefield accelerators can produce electric fields of order 10-100 GV/m, suitable for accelera...
Electron beams with hundreds of picoCoulombs of charge in percent energy spread at above 80 MeV, an...
High-quality electron beams, with a few 109 electrons within a few percent of the same energy above ...
High quality electron beams, with a few 10^9 electrons within a few percent of the same energy above...
High quality electron beams with hundreds of picoCoulombs ofcharge inpercent energy spread above 80 ...
High quality electron beams (several 109 electrons above 80 MeV energy with percent energy spread an...
Experiments at the LOASIS laboratory of LBNL recentlydemonstrated production of 100 MeV electron bea...
Experiments at the LOASIS laboratory of LBNL havedemonstrated production of 100 MeV to 1 GeV electro...
Electron bunches produced in self-modulated laser wakefield experiments usually have a broad energy ...
A laser driven wakefield accelerator has been tuned to produce high energy electron bunches with lo...
The electric field in laser-driven plasma wakefield acceleration is orders of magnitude higher than ...
International audienceAn important limit for energy gain in laser-plasma wakefield accelerators is t...
The phase velocity of the wakefield of a laser wakefield accelerator can, theoretically, be manipula...
Electron beams with hundreds of picoCoulombs of charge in percent energy spread at above 80 MeV, and...
Very stable, high quality electron beams (current similar to 10 kA, energy spread < 1%, emittance si...
Laser wakefield accelerators can produce electric fields of order 10-100 GV/m, suitable for accelera...
Electron beams with hundreds of picoCoulombs of charge in percent energy spread at above 80 MeV, an...