The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the main challenges currently facing the field of laser-wakefield acceleration of electrons. We address these issues by manipulating the electron beams after their generation using miniature magnetic quadrupole lenses with field gradients of ~500 T/M. By imaging electron beams the spectral resolution of dipole magnet spectrometers can be significantly increased, resulting in measured energy spreads down to 1.0% rms at 190 MeV. The focusing of different electron energies demonstrates the tenability of the lens system and could be used to filter out off-target energies in order to reduce the energy spread even further. By collimating the beam, the sho...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWith gigaelectron-volts per centimetre energy gains and femtosecond electron b...
International audienceWith gigaelectron-volts per centimetre energy gains and femtosecond electron b...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWith gigaelectron-volts per centimetre energy gains and femtosecond electron b...
International audienceWith gigaelectron-volts per centimetre energy gains and femtosecond electron b...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
International audienceWith gigaelectron-volts per centimetre energy gains and femtosecond electron b...
International audienceWith gigaelectron-volts per centimetre energy gains and femtosecond electron b...