Focusing of a 15 MeV, 19 nC electron bunch by an underdense plasma lens operated just beyond the threshold of the underdense condition has been demonstrated in experiments at the Fermilab NICADD Photoinjector Laboratory (FNPL). The strong 1.9 cm focal-length plasma-lens focused both transverse directions simultaneously and reduced the minimum area of the beam spot by a factor of 23. Analysis of the beam-envelope evolution observed near the beam waist shows that the spherical aberrations of this underdense lens are lower than those of an overdense plasma lens, as predicted by theory. Correlations between the beam charge and the properties of the beam focus corroborate this conclusion
We report on the first demonstration of passive all-optical plasma lensing using a two-stage setup. ...
Beam injection and extraction from a plasma module is still one of the crucial aspects to solve in o...
This work assesses the potential of active plasma lenses to deliver stable, quality-preservingfocusi...
Focusing of a 15 MeV, 16 nC electron bunch by a gaussian underdense plasma lens operated just beyond...
Focusing of a 15 MeV, 19 nC electron bunch by an un-derdense plasma lens operated just beyond the th...
A gaussian underdense plasma lens with peak density 5 x 10{sup 12} cm{sup -3} and a full width half ...
A comprehensive experimental study of focusing of relativistic electron beams with overdense and und...
We present a laser-ionized, beam-driven, passive thin plasma lens that operates in the nonlinear blo...
The focusing of particles by a thin plasma lens is analyzed with physical, linearized fluid and part...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
We explore the implications of a transverse density gradient on the performance of an underdense pla...
Plasma-based technology promises a tremendous reduction in size of accelerators used for research, m...
We report on the first demonstration of passive all-optical plasma lensing using a two-stage setup. ...
Beam injection and extraction from a plasma module is still one of the crucial aspects to solve in o...
This work assesses the potential of active plasma lenses to deliver stable, quality-preservingfocusi...
Focusing of a 15 MeV, 16 nC electron bunch by a gaussian underdense plasma lens operated just beyond...
Focusing of a 15 MeV, 19 nC electron bunch by an un-derdense plasma lens operated just beyond the th...
A gaussian underdense plasma lens with peak density 5 x 10{sup 12} cm{sup -3} and a full width half ...
A comprehensive experimental study of focusing of relativistic electron beams with overdense and und...
We present a laser-ionized, beam-driven, passive thin plasma lens that operates in the nonlinear blo...
The focusing of particles by a thin plasma lens is analyzed with physical, linearized fluid and part...
International audienceLaser-plasma technology promises a drastic reduction of the size of high-energ...
We explore the implications of a transverse density gradient on the performance of an underdense pla...
Plasma-based technology promises a tremendous reduction in size of accelerators used for research, m...
We report on the first demonstration of passive all-optical plasma lensing using a two-stage setup. ...
Beam injection and extraction from a plasma module is still one of the crucial aspects to solve in o...
This work assesses the potential of active plasma lenses to deliver stable, quality-preservingfocusi...