论文标题
血浆百叶窗的设计,可改善超强激光脉冲的重离子加速度
Design of plasma shutters for improved heavy ion acceleration by ultra-intense laser pulses
论文作者
论文摘要
在这项工作中,我们研究了血浆百叶窗在高强度激光脉冲驱动的重离子加速度中的应用。我们使用细胞中的粒子(PIC)和流体动力模拟。通过不透明的快门传输的激光脉冲获得了陡峭的前部,其峰值强度以损失部分能量的成本而在局部增加。这些影响直接影响快门后面超薄靶标的后续离子加速度。在我们对氮化硅等离子体快门和银靶的3D模拟中,当包括线性和圆形极化激光脉冲的快门时,高Z离子的最大能量显着增加。此外,等离子体快门在线性极化脉冲中的应用导致将离子聚焦于垂直于激光极化的平面中的激光轴。与宽离子云相比,生成的高能离子束的发散明显降低,而无需快门就产生了。假设双等离子体快门,还研究了预卵形的作用。第一个快门可以承受假定的子NS预脉冲(假定其他技术对NS和PS预序处理),并且脉冲成型发生与第二个快门的相互作用。根据我们的理论发现,我们制定了一种方法,用于设计双等离子体快门,以实现高强度和高功率激光脉冲并构建原型。
In this work, we investigate the application of the plasma shutters for heavy ion acceleration driven by a high-intensity laser pulse. We use particle-in-cell (PIC) and hydrodynamic simulations. The laser pulse, transmitted through the opaque shutter, gains a steep-rising front and its peak intensity is locally increased at the cost of losing part of its energy. These effects have a direct influence on subsequent ion acceleration from the ultrathin target behind the shutter. In our 3D simulations of silicon nitride plasma shutter and a silver target, the maximal energy of high-Z ions increases significantly when the shutter is included for both linearly and circularly polarized laser pulses. Moreover, application of the plasma shutter for linearly polarized pulse results in focusing of ions towards the laser axis in the plane perpendicular to the laser polarization. The generated high energy ion beam has significantly lower divergence compared to the broad ion cloud, generated without the shutter. The effects of prepulses are also investigated assuming a double plasma shutter. The first shutter can withstand the assumed sub-ns prepulse (treatment of ns and ps prepulses by other techniques is assumed) and the pulse shaping occursvia interaction with the second shutter. On the basis of our theoretical findings, we formulated an approach towards designing a double plasma shutter for high-intensity and high-power laser pulses and built a prototype.