McKenna Paul, Lindau Filip, Lundh Olle, Neely David, Persson Anders, Wahlström Claes-Göran
University of Strathclyde SUPA, Department of Physics 107 Rottenrow, Glasgow G4 0NG, UK.
Philos Trans A Math Phys Eng Sci. 2006 Mar 15;364(1840):711-23. doi: 10.1098/rsta.2005.1733.
Proton acceleration from the interaction of ultra-short laser pulses with thin foil targets at intensities greater than 10(18) W cm(-2) is discussed. An overview of the physical processes giving rise to the generation of protons with multi-MeV energies, in well defined beams with excellent spatial quality, is presented. Specifically, the discussion centres on the influence of laser pulse contrast on the spatial and energy distributions of accelerated proton beams. Results from an ongoing experimental investigation of proton acceleration using the 10 Hz multi-terawatt Ti:sapphire laser (35f s, 35 TW) at the Lund Laser Centre are discussed. It is demonstrated that a window of amplified spontaneous emission (ASE) conditions exist, for which the direction of proton emission is sensitive to the ASE-pedestal preceding the peak of the laser pulse, and that by significantly improving the temporal contrast, using plasma mirrors, efficient proton acceleration is observed from target foils with thickness less than 50 nm.
讨论了超短激光脉冲与强度大于10¹⁸W/cm²的薄箔靶相互作用产生的质子加速。本文概述了在具有优异空间质量的明确定义的束流中产生多兆电子伏特能量质子的物理过程。具体而言,讨论集中在激光脉冲对比度对加速质子束的空间和能量分布的影响。文中讨论了正在隆德激光中心使用10Hz多太瓦钛宝石激光器(35fs,35TW)进行的质子加速实验研究结果。结果表明,存在一个放大自发辐射(ASE)条件窗口,在此窗口内质子发射方向对激光脉冲峰值之前的ASE基座敏感,并且通过使用等离子体镜显著改善时间对比度,可以观察到来自厚度小于50nm的靶箔的高效质子加速。