Spiking electron beam driven plasma waves with novel laser-driven underdense photocathodes can produce electron witness bunches with extreme brightness. The development of such hybrid systems and their potential as future plasma-based accelerators and compact yet high performance light sources is discussed
Plasma wakefield accelerators offer accelerating and focusing electric fields three to four orders o...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Beam-driven plasma wakefield acceleration using low-ionization-threshold gas such as Li is combined ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
Plasma wakefield accelerators offer accelerating and focusing electric fields three to four orders o...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Beam-driven plasma wakefield acceleration using low-ionization-threshold gas such as Li is combined ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
Plasma photocathodes open a path towards tunable production of well-defined, compact electron beams ...
We provide a pathway to compact ultrabright light sources, based on ultrabright, high energy electro...
Plasma wakefield accelerators offer accelerating and focusing electric fields three to four orders o...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...