Theoretical Physics Institute, University of Alberta, Edmonton T6G 2J1, Alberta, Canada.
Phys Rev Lett. 2010 Nov 5;105(19):195002. doi: 10.1103/PhysRevLett.105.195002. Epub 2010 Nov 1.
The ion response to relativistic electron bunches in the so called bubble or blowout regime of a laser-plasma accelerator is discussed. In response to the strong fields of the accelerated electrons the ions form a central filament along the laser axis that can be compressed to densities 2 orders of magnitude higher than the initial particle density. A theory of the filament formation and a model of ion self-compression are proposed. It is also shown that in the case of a sharp rear plasma-vacuum interface the ions can be accelerated by a combination of three basic mechanisms. The long time ion evolution that results from the strong electrostatic fields of an electron bunch provides a unique diagnostic of laser-plasma accelerators.
讨论了在激光等离子体加速器的所谓泡沫或吹出模式下,离子对相对论电子束的响应。为了应对加速电子的强场,离子沿激光轴形成一个中心细丝,其密度可被压缩到比初始粒子密度高 2 个数量级。提出了细丝形成的理论和离子自压缩模型。还表明,在尖锐的后等离子体-真空界面的情况下,离子可以通过三种基本机制的组合来加速。电子束的强静电场导致的长时间离子演化为激光等离子体加速器提供了独特的诊断。