The interaction of high intensity laser pulses with underdense plasma is investigated experimentally using a range of laser parameters and energetic electron production mechanisms are compared. It is clear that the physics of these interactions changes significantly depending not only on the interaction intensity but also on the laser pulse length. For high intensity laser interactions in the picosecond pulse duration regime the production of energetic electrons is highly correlated with the production of plasma waves. However as intensities are increased the peak electron acceleration increases beyond that which can be produced from single stage plasma wave acceleration and direct laser acceleration mechanisms must be invoked. If, alternat...
The continuous rapid advance in the development of relativistic laser systems currently boosts the u...
Abstract. Conditions for efficient electron acceleration in the wake of a 35fs laser pulse propagati...
Laser-plasma interactions have many potential applications, such as medical treatments,x-ray generat...
The interaction of high intensity laser pulses with underdense plasma is investigated experimentally...
International audienceThe interaction of high intensity laser pulses with underdense plasma is inves...
The interaction of high intensity laser pulses with underdense plasma is investigated experimentally...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The acceleration of electrons in laser plasma interaction has been observed since the seventies, whe...
An experiment investigating the production of relativistic electrons from the interaction of ultrash...
An experiment investigating the production of relativistic electrons from the interaction of ultras...
The continuous rapid advance in the development of relativistic laser systems currently boosts the u...
Abstract. Conditions for efficient electron acceleration in the wake of a 35fs laser pulse propagati...
Laser-plasma interactions have many potential applications, such as medical treatments,x-ray generat...
The interaction of high intensity laser pulses with underdense plasma is investigated experimentally...
International audienceThe interaction of high intensity laser pulses with underdense plasma is inves...
The interaction of high intensity laser pulses with underdense plasma is investigated experimentally...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The acceleration of electrons in laser plasma interaction has been observed since the seventies, whe...
An experiment investigating the production of relativistic electrons from the interaction of ultrash...
An experiment investigating the production of relativistic electrons from the interaction of ultras...
The continuous rapid advance in the development of relativistic laser systems currently boosts the u...
Abstract. Conditions for efficient electron acceleration in the wake of a 35fs laser pulse propagati...
Laser-plasma interactions have many potential applications, such as medical treatments,x-ray generat...