Chen M, Pukhov A, Yu T P, Sheng Z M
Institut für Theoretische Physik I, Heinrich-Heine-Universität Düsseldorf, Düsseldorf 40225, Germany.
Phys Rev Lett. 2009 Jul 10;103(2):024801. doi: 10.1103/PhysRevLett.103.024801.
Using multidimensional particle-in-cell simulations we study ion acceleration from a foil irradiated by a circularly polarized laser pulse at 10;{22} W/cm;{2} intensity. When the foil is shaped initially in the transverse direction to match the laser intensity profile, three different regions (acceleration, transparency, and deformation region) are observed. In the acceleration region, the foil can be uniformly accelerated for a longer time compared to a usual flat target. Undesirable plasma heating is effectively suppressed. The final energy spectrum of the accelerated ion beam in the acceleration region is improved dramatically. Collimated GeV quasi-monoenergetic ion beams carrying as much as 19% of the laser energy are observed in multidimensional simulations.
我们使用多维粒子模拟研究了在强度为(10^{22} W/cm^{2})的圆偏振激光脉冲辐照下箔片中的离子加速情况。当初始时箔片在横向方向上被塑造为与激光强度分布相匹配时,会观察到三个不同的区域(加速区域、透明区域和变形区域)。在加速区域,与通常的平面靶相比,箔片能够被均匀加速更长的时间。有害的等离子体加热得到有效抑制。加速区域中加速离子束的最终能谱得到显著改善。在多维模拟中观察到了携带高达(19%)激光能量的准直GeV准单能离子束。