Dark current can spoil witness bunch beam quality and acceleration efficiency in particle beam-driven plasma wakefield accelerators. In advanced schemes, hot spots generated by the drive beam or the wakefield can release electrons from higher ionization threshold levels in the plasma media. These electrons may be trapped inside the plasma wake and will then accumulate dark current, which is generally detrimental for a clear and unspoiled plasma acceleration process. Strategies for generating clean and robust, dark current free plasma wake cavities are devised and analyzed, and crucial aspects for experimental realization of such optimized scenarios are discussed
The 'Trojan Horse' underdense plasma photocathode scheme applied to electron beam-driven plasma wake...
Plasma wakefield acceleration is the most promising acceleration technique known nowadays, able to ...
We present a detailed analysis of the features and capabilities of Wakefield-Induced Ionization (WII...
Dark current can spoil witness bunch beam quality and acceleration efficiency in particle beam-drive...
Dark current can spoil witness bunch beam quality and acceleration efficiency in particle beam-drive...
The nonlinear blowout regime of the plasma Wakefield acceleration has been the subject of considerab...
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...
A plasma wakefield accelerator (PWFA) uses a plasma wave (a wake) to accelerate electrons at a gradi...
We present a detailed analysis of the features and capabilities of Wakefield-Induced Ionization (WII...
We study the stability of plasma wake wave and the properties of density-downramp injection in an el...
We present a detailed analysis of the features and capabilities of Wakefield-Induced Ionization (WII...
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...
Plasma wakefield acceleration is the most promising acceleration technique known nowadays, able to ...
We present a detailed analysis of the features and capabilities of Wakefield-Induced Ionization (WII...
Dark current can spoil witness bunch beam quality and acceleration efficiency in particle beam-drive...
Dark current can spoil witness bunch beam quality and acceleration efficiency in particle beam-drive...
The nonlinear blowout regime of the plasma Wakefield acceleration has been the subject of considerab...
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...
A plasma wakefield accelerator (PWFA) uses a plasma wave (a wake) to accelerate electrons at a gradi...
We present a detailed analysis of the features and capabilities of Wakefield-Induced Ionization (WII...
We study the stability of plasma wake wave and the properties of density-downramp injection in an el...
We present a detailed analysis of the features and capabilities of Wakefield-Induced Ionization (WII...
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...
Plasma wakefield acceleration is the most promising acceleration technique known nowadays, able to ...
We present a detailed analysis of the features and capabilities of Wakefield-Induced Ionization (WII...