At the SPARC_LAB facility of INFN-LNF we are installing a transport lines for ultra-short electron bunches and another for ultra-intense laser pulses,generated by the SPARC photo-injector and by the FLAME laser in asynchronized fashion at the tens of fs level,to co-propagate inside a hydrogen filled glass capillary,in order to perform acceleration of the electron bunch by a plasma wave driven by the laser pulse.The main aim of this experiment is to demonstrate that a high brightness electron beam can be accelerated by a plasma wave without any significant degradation of its quality.Motivations of the technical choices are made and expected performances are reporte
The plasma-based acceleration is an encouraging technique to overcome the limits of the accelerating...
Plasma wakefield acceleration is the most promising acceleration technique known nowadays, able to ...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...
At the SPARC_LAB facility of INFN-LNF we are installing a transport lines for ultra-short electron b...
At the SPARC LAB facility of INFN-LNF we are installing two transport lines for ultra-short electron...
AbstractAt the SPARC_LAB facility of INFN-LNF we are installing two transport lines for ultra-short ...
At the SPARC_LAB facility of INFN-LNF we are installing two transport lines for ultra-short electron...
At the SPARC LAB facility of INFN-LNF we are installing two transport lines for ultra-short electro...
At the SPARC LAB facility of INFN-LNF we are installing two transport lines for ultra-short electro...
The current activity of the SPARC_LAB test-facility is focused on the realization of plasma-based ac...
Laser-driven plasma acceleration is now being considered world-wide as a promising technique for the...
This thesis describes experiments involving laser-plasma-based acceleration of electrons and protons...
The plasma-based acceleration is an encouraging technique to overcome the limits of the accelerating...
Plasma wakefield acceleration is the most promising acceleration technique known nowadays, able to ...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...
At the SPARC_LAB facility of INFN-LNF we are installing a transport lines for ultra-short electron b...
At the SPARC LAB facility of INFN-LNF we are installing two transport lines for ultra-short electron...
AbstractAt the SPARC_LAB facility of INFN-LNF we are installing two transport lines for ultra-short ...
At the SPARC_LAB facility of INFN-LNF we are installing two transport lines for ultra-short electron...
At the SPARC LAB facility of INFN-LNF we are installing two transport lines for ultra-short electro...
At the SPARC LAB facility of INFN-LNF we are installing two transport lines for ultra-short electro...
The current activity of the SPARC_LAB test-facility is focused on the realization of plasma-based ac...
Laser-driven plasma acceleration is now being considered world-wide as a promising technique for the...
This thesis describes experiments involving laser-plasma-based acceleration of electrons and protons...
The plasma-based acceleration is an encouraging technique to overcome the limits of the accelerating...
Plasma wakefield acceleration is the most promising acceleration technique known nowadays, able to ...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...