Laser-driven plasma acceleration is now being considered world-wide as a promising technique for the development of a new class of particle accelerators. The INFN-PLASMONX project aims at exploring this scenario using ultra-short laser pulses of the 0.3 PW, Ti:Sa laser system FLAME (Frascati Laser for Acceleration and Multidisciplinary Experiments). A self-injection test experiment (SITE) is being designed and set up to study electron acceleration at the sub GeV energy level. In this paper we describe the planned experiment, including the numerical modelling, the main plasma diagnostics and the electron spectrometer
This thesis describes experiments involving laser-plasma-based acceleration of electrons and protons...
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...
Laser-driven plasma acceleration is now being considered world-wide as a promising technique for th...
Viene descritto l'esperimento PLASMONX per l'accelerazione di elettroni al GeV con il laser di pote...
A 250-TW laser system (FLAME - Frascati laser for acceleration and multidisciplinary experiments) is...
In this paper we will briefly introduce laser–plasma acceleration for electrons and present some num...
A new era of laser based plasma accelerators is emerging following the commissioning of many high po...
An increasing number of high-power laser laboratories are being established with the aim of developi...
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 electro...
The plasma-based acceleration is an encouraging technique to overcome the limits of the accelerating...
This thesis describes experimental studies that aim to stabilise and optimise laser-based particle a...
This thesis describes experiments involving laser-plasma-based acceleration of electrons and protons...
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...
Laser-driven plasma acceleration is now being considered world-wide as a promising technique for th...
Viene descritto l'esperimento PLASMONX per l'accelerazione di elettroni al GeV con il laser di pote...
A 250-TW laser system (FLAME - Frascati laser for acceleration and multidisciplinary experiments) is...
In this paper we will briefly introduce laser–plasma acceleration for electrons and present some num...
A new era of laser based plasma accelerators is emerging following the commissioning of many high po...
An increasing number of high-power laser laboratories are being established with the aim of developi...
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 electro...
The plasma-based acceleration is an encouraging technique to overcome the limits of the accelerating...
This thesis describes experimental studies that aim to stabilise and optimise laser-based particle a...
This thesis describes experiments involving laser-plasma-based acceleration of electrons and protons...
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...