Kluge T, Enghardt W, Kraft S D, Schramm U, Sentoku Y, Zeil K, Cowan T E, Sauerbrey R, Bussmann M
Forschungszentrum Dresden-Rossendorf eV, Dresden, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Jul;82(1 Pt 2):016405. doi: 10.1103/PhysRevE.82.016405. Epub 2010 Jul 19.
A new scheme to efficiently accelerate protons by a single linear polarized high-intensity ultrashort laser pulse using multiple ultrathin foils is proposed. The foils are stacked at a spacing comparable to their thickness and subsequently irradiated by the same laser pulse. The foil thicknesses are chosen such that the laser light pressure can displace all electrons out of the foil. The authors present a simple, yet precise dynamical model of the acceleration process from which both optimum foil thickness and spacing can be derived. Extensive two-dimensional (2D) particle-in-cell simulations verify the model predictions and suggest an enhancement of the maximum proton kinetic energy by 30% for the two-foil case compared to a single foil.
提出了一种新方案,利用多个超薄箔片通过单个线性极化高强度超短激光脉冲有效地加速质子。箔片以与其厚度相当的间距堆叠,随后用同一激光脉冲照射。选择箔片厚度,使得激光光压能够将所有电子从箔片中驱出。作者提出了一个简单而精确的加速过程动力学模型,从中可以推导出最佳箔片厚度和间距。广泛的二维粒子模拟验证了模型预测,并表明与单个箔片相比,双箔片情况下质子最大动能提高了30%。