There has been a great progress in development of high power laser technology. Harnessing their potential for particle accelerators is a challenge and of great interest for development of future high energy colliders. The author discusses some of the advances and new methods of acceleration including plasma-based accelerators. The exponential increase in sophistication and power of all aspects of accelerator development and operation that has been demonstrated has been remarkable. This success has been driven by the inherent interest to gain new and deeper understanding of the universe around us. With the limitations of the conventional technology it may not be possible to meet the requirements of the future accelerators with demands for hi...
Particle accelerators have enabled forefront research in high energy physics and other research area...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...
Large scale laser facilities are needed to advance the energy frontier in high energy physics and ac...
Large scale laser facilities are needed to advance the energy frontier in high energy physics and ac...
In this article, we present the underlying physics and the present status of high gradient and high-...
Recent years have seen spectacular progress in the development of innovative acceleration methods th...
In this article, we present the underlying physics and the present status of high gradient and high-...
Recent years have seen spectacular progress in the development of innovative acceleration methods th...
We will discuss the progress on building laser powered, plasma based particle accelerators where ele...
Outstanding progress has been made in high-power laser technology in the last 10 years with laser po...
Laser-driven plasma accelerators provide acceleration gradients that are three orders of magnitude g...
We briefly describe the new book, Applications of Laser-Driven Particle Acceleration, which was publ...
To date active research on laser-driven plasma-based accelerators have achieved great progress on pr...
The fundamental idea of LaserWakefield Acceleration (LWFA) is reviewed. An ultrafast intense laser p...
Particle accelerators have enabled forefront research in high energy physics and other research area...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...
Large scale laser facilities are needed to advance the energy frontier in high energy physics and ac...
Large scale laser facilities are needed to advance the energy frontier in high energy physics and ac...
In this article, we present the underlying physics and the present status of high gradient and high-...
Recent years have seen spectacular progress in the development of innovative acceleration methods th...
In this article, we present the underlying physics and the present status of high gradient and high-...
Recent years have seen spectacular progress in the development of innovative acceleration methods th...
We will discuss the progress on building laser powered, plasma based particle accelerators where ele...
Outstanding progress has been made in high-power laser technology in the last 10 years with laser po...
Laser-driven plasma accelerators provide acceleration gradients that are three orders of magnitude g...
We briefly describe the new book, Applications of Laser-Driven Particle Acceleration, which was publ...
To date active research on laser-driven plasma-based accelerators have achieved great progress on pr...
The fundamental idea of LaserWakefield Acceleration (LWFA) is reviewed. An ultrafast intense laser p...
Particle accelerators have enabled forefront research in high energy physics and other research area...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...
The goal here is to use high electric fields in plasmas to accelerate electrons to 100-GeV energies ...