Particle acceleration by relativistic electron plasma waves generated by intense lasers has been demonstrated in a number of experiments by various mechanisms. Accelerating fields as high as 1 GeV/cm, with electrons accelerated to about 100 MeV in millimetre distances have been achieved. These fields produced by intense lasers in plasmas are the largest ever produced in laboratory experiments. The first experiments are very much "first generation" laser plasma accelerator experiments and are concerned with demonstrating proof-of-principle acceleration in relativistic plasma waves. Attention is now being focussed on other important aspects of plasma accelerators such as beam current and beam quality and not just accelerating gradients. Recen...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
This thesis describes experimental studies of laser-driven particle acceleration. With the focused i...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
The accelerating fields in radio-frequency accelerators are limited to roughly 100 MV/m due to mater...
Low density plasmas have long been of interest as a potential medium for particle acceleration since...
A two-frequency CO laser beam was used to beat-excite a large amplitude electron plasma wave in a re...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
This thesis describes experimental studies of laser-driven particle acceleration. With the focused i...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
The accelerating fields in radio-frequency accelerators are limited to roughly 100 MV/m due to mater...
Low density plasmas have long been of interest as a potential medium for particle acceleration since...
A two-frequency CO laser beam was used to beat-excite a large amplitude electron plasma wave in a re...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...
This thesis describes experimental studies of laser-driven particle acceleration. With the focused i...
In this article, we concentrate on the basic physics of relativistic plasma wave accelerators. The g...