The authors present results from the SLAC E-150 experiment on plasma focusing of high energy density electron and, for the first time, positron beams. They also discuss measurements on plasma lens-induced synchrotron radiation, longitudinal dynamics of plasma focusing, and laser- and beam-plasma interactions
Plasmas can focus both electron and positron beams. However, while the incoming Gaussian transverse ...
We report on the first demonstration of passive all-optical plasma lensing using a two-stage setup. ...
In recent years, high-gradient, symmetric focusing with active plasma lenses has regained significan...
The authors present results from the SLAC E-150 experiment on plasma focusing of high energy density...
We present results from the SLAC E-150 experiment on plasma focusing of high energy density electron...
The authors intend to carry out a series of plasma lens experiments at the Final Focus Test Beam fac...
We intend to carry out a series of plasma lens experiments at the Final Focus Test Beam facility at ...
The focusing of particles by a thin plasma lens is analyzed with physical, linearized fluid and part...
A comprehensive experimental study of focusing of relativistic electron beams with overdense and und...
Beam injection and extraction from a plasma module is still one of the crucial aspects to solve in o...
The focusing strength of plasma lenses used with high energy electron or positron beams can give ris...
As the need for scale-up in the provision of radiotherapy (RT) is clear, developing cost-effective a...
This work assesses the potential of active plasma lenses to deliver stable, quality-preservingfocusi...
A collaborative group of accelerator and plasma physicists and engineers has formed with an interest...
In recent years, the concept of high-gradient, symmetric focusing using active plasma lenses has reg...
Plasmas can focus both electron and positron beams. However, while the incoming Gaussian transverse ...
We report on the first demonstration of passive all-optical plasma lensing using a two-stage setup. ...
In recent years, high-gradient, symmetric focusing with active plasma lenses has regained significan...
The authors present results from the SLAC E-150 experiment on plasma focusing of high energy density...
We present results from the SLAC E-150 experiment on plasma focusing of high energy density electron...
The authors intend to carry out a series of plasma lens experiments at the Final Focus Test Beam fac...
We intend to carry out a series of plasma lens experiments at the Final Focus Test Beam facility at ...
The focusing of particles by a thin plasma lens is analyzed with physical, linearized fluid and part...
A comprehensive experimental study of focusing of relativistic electron beams with overdense and und...
Beam injection and extraction from a plasma module is still one of the crucial aspects to solve in o...
The focusing strength of plasma lenses used with high energy electron or positron beams can give ris...
As the need for scale-up in the provision of radiotherapy (RT) is clear, developing cost-effective a...
This work assesses the potential of active plasma lenses to deliver stable, quality-preservingfocusi...
A collaborative group of accelerator and plasma physicists and engineers has formed with an interest...
In recent years, the concept of high-gradient, symmetric focusing using active plasma lenses has reg...
Plasmas can focus both electron and positron beams. However, while the incoming Gaussian transverse ...
We report on the first demonstration of passive all-optical plasma lensing using a two-stage setup. ...
In recent years, high-gradient, symmetric focusing with active plasma lenses has regained significan...