Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m$^{−1}$ with generation of ultralow emittance electron bunches, and opens a path towards 5D-brightness orders of magnitude larger than state-of-the-art. This holds great promise for compact accelerator building blocks and advanced light sources. However, an intrinsic by-product of the enormous electric field gradients inherent to plasma accelerators is substantial correlated energy spread—an obstacle for key applications such as free-electron-lasers. Here we show that by releasing an additional tailored escort electron beam at a later phase of the acceleration, when the witness bunch is relativistically stable, the plasma wave can be locally overloaded without ...
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...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m$^{−1}$ with genera...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m-1 with generation ...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m−1 with generation ...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Laser wakefield accelerators produce accelerating gradients up to hundreds of GeV/m, and recently d...
Laser wakefield accelerators produce accelerating gradi-ents up to hundreds of GeV/m, and recently d...
Energy-efficient plasma-wakefield acceleration of particle bunches with low energy spread is a promi...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
Plasma accelerators driven by intense laser or particle beams provide gigavolt-per-meter acceleratin...
High-brightness particle beams generated by advanced accelerator concepts have the potential to beco...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
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...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m$^{−1}$ with genera...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m-1 with generation ...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m−1 with generation ...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Laser wakefield accelerators produce accelerating gradients up to hundreds of GeV/m, and recently d...
Laser wakefield accelerators produce accelerating gradi-ents up to hundreds of GeV/m, and recently d...
Energy-efficient plasma-wakefield acceleration of particle bunches with low energy spread is a promi...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
Plasma accelerators driven by intense laser or particle beams provide gigavolt-per-meter acceleratin...
High-brightness particle beams generated by advanced accelerator concepts have the potential to beco...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
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...
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...