Beam-driven plasma wakefield acceleration using low-ionization-threshold gas such as Li is combined with laser-controlled electron injection via ionization of high-ionization-threshold gas such as He. The He electrons are released with low transverse momentum in the focus of the copropagating, nonrelativistic-intensity laser pulse directly inside the accelerating or focusing phase of the Li blowout. This concept paves the way for the generation of sub-μm-size, ultralow-emittance, highly tunable electron bunches, thus enabling a flexible new class of an advanced free electron laser capable high-field accelerator. © 2012 American Physical Society
Spiking electron beam driven plasma waves with novel laser-driven underdense photocathodes can produ...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...
Beam-driven plasma wakefield acceleration using low-ionization-threshold gas such as Li is combined ...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
Laser wakefield acceleration of electrons holds great promise for producing ultra-compact stages of ...
We studied the generation of low emittance high current monoenergetic beams from plasma waves driven...
We studied the generation of low emittance high current monoenergetic beams from plasma waves driven...
Spiking electron beam driven plasma waves with novel laser-driven underdense photocathodes can produ...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...
Beam-driven plasma wakefield acceleration using low-ionization-threshold gas such as Li is combined ...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
Laser wakefield acceleration of electrons holds great promise for producing ultra-compact stages of ...
We studied the generation of low emittance high current monoenergetic beams from plasma waves driven...
We studied the generation of low emittance high current monoenergetic beams from plasma waves driven...
Spiking electron beam driven plasma waves with novel laser-driven underdense photocathodes can produ...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...