The next generation of high peak power CPA laser systems will be improved in compactness, simplicity, and cost. Yb:glass is a suitable choice for the amplifier medium in such a laser system necessary for an all-optical GeV accelerator. © 1997 American Institute of Physics.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/87564/2/68_1.pd
In this article, we review progress in the development of high peak-power ultrafast lasers, and disc...
Over the past fifteen years we have seen a surge in our ability to produce high intensities, five to...
The ultrashort chirped pulse amplification (CPA) laser technology opens the path to high intensities...
Accelerators are today in every walk of science and life [1]. High intensity lasers drive frontiers ...
Large scale laser facilities are needed to advance the energy frontier in high energy physics and ac...
Laser-wakefield acceleration (LWFA) is a promising, emerging technology for future accelerator-based...
Ultra-high peak power laser systems are applicable in new and very promising areas, such as charged ...
This paper reviews the development of ultrahigh-intensity laser technology from the early 1960`s to ...
There is a strong motivation to develop powerful ultra- short pulse generators, due to their diverse...
Since the demonstration of a chirped-pulse amplification laser was first made in 1985, the amount of...
For over 10 years, laser plasma acceleration (LPA) has been a rapidly growing technologyused to crea...
The fundamental idea of LaserWakefield Acceleration (LWFA) is reviewed. An ultrafast intense laser p...
International audienceThe fundamental idea of Laser Wakefield Acceleration (LWFA) is re- viewed. An ...
Fiber lasers are an attractive alternative to bulk solid-state systems due to their potential for co...
A set of ballpark parameters for laser, plasma, and accelerator technologies that define for electro...
In this article, we review progress in the development of high peak-power ultrafast lasers, and disc...
Over the past fifteen years we have seen a surge in our ability to produce high intensities, five to...
The ultrashort chirped pulse amplification (CPA) laser technology opens the path to high intensities...
Accelerators are today in every walk of science and life [1]. High intensity lasers drive frontiers ...
Large scale laser facilities are needed to advance the energy frontier in high energy physics and ac...
Laser-wakefield acceleration (LWFA) is a promising, emerging technology for future accelerator-based...
Ultra-high peak power laser systems are applicable in new and very promising areas, such as charged ...
This paper reviews the development of ultrahigh-intensity laser technology from the early 1960`s to ...
There is a strong motivation to develop powerful ultra- short pulse generators, due to their diverse...
Since the demonstration of a chirped-pulse amplification laser was first made in 1985, the amount of...
For over 10 years, laser plasma acceleration (LPA) has been a rapidly growing technologyused to crea...
The fundamental idea of LaserWakefield Acceleration (LWFA) is reviewed. An ultrafast intense laser p...
International audienceThe fundamental idea of Laser Wakefield Acceleration (LWFA) is re- viewed. An ...
Fiber lasers are an attractive alternative to bulk solid-state systems due to their potential for co...
A set of ballpark parameters for laser, plasma, and accelerator technologies that define for electro...
In this article, we review progress in the development of high peak-power ultrafast lasers, and disc...
Over the past fifteen years we have seen a surge in our ability to produce high intensities, five to...
The ultrashort chirped pulse amplification (CPA) laser technology opens the path to high intensities...