The Progress and the State-of-Art Processes for Ultra-Intensity Laser-Driven Accelerators

Author:

Wang Hanxian

Abstract

Abstract Contemporarily, with rapid development of the laser techniques, it is feasible to accelerate particles based on ultra-intensity laser. Compared to the conventional accelerators, the occupation and costs are much smaller. With this in mind, this article aims to conclude the achievement of laser acceleration in those years. In this paper, the property of the wakefield acceleration, CPA, and optical tweezer are summarized and the achievements of the state-of-art facilities are also demonstrated. However, there are still some influence factors in the acceleration, and the limitations of the laser acceleration are also mentioned. Based on the analysis, the future routine for this scheme will be proposed accordingly. Overall, these results shed light on guiding further exploration for laser-driven accelerators.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference21 articles.

1. Key problems in physics and Technology of high-current proton accelerator [J];Shinian;Nuclear Science and Technology Report of China,2001

2. Collective ion acceleration by a reflexing electron beam: Model and scaling[J];Mako;The Physics of fluids,1984

3. The expansion of a plasma into a vacuum[J];Crow;Journal of Plasma Physics,1975

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