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Laser interaction with nano-structured target and their applications in high energy density physics

机译:激光与纳米结构目标的相互作用及其在高能量密度物理中的应用

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In order to improve the total laser-proton energy conversion efficiency, a nanobrush target is proposed. Compared with foil target, the sheath field on the rear surface of nanobrush target is increased near 100% and the energy efficiency from laser to proton is prompted more than 70%. Meanwhile, the proton beam is well collimated with divergence angle less than 30degree. As sub-wavelength nanolayered target and conical targets both enhance laser absorption compared with foil targets, we propose a conical nanolayered target in trying to improve coupling efficiency. Compared with nanolayered target, the energy coupling efficiency is enhanced from 34% to more than 68%. Detailed simulations indicate that this enhancement is attributed to both oblique incidence and focusing of the conical target. Moreover, the conical nanolayered target collimates the hot electrons better. The conical nanobrush target is used to improve the total proton energy-conversion efficiency in proton beam acceleration. Results indicate a significant enhancement of the number and energies of hot electrons through the target rear side of the conical nanobrush target. Compared with the plain target, the field increases several times. We observe enhancements of the average proton energy and total laser-proton energy conversion efficiency of 105%. This enhancement is attributed to both nanobrush and conical configurations. The proton beam is well collimated with a divergence angle less than 28degree.
机译:为了提高总激光质子能量转换效率,提出了一种纳米水溶液。与箔靶相比,纳米水靶后表面上的鞘场增加了100%接近100%,激光到质子的能量效率升高超过70%。同时,质子梁与散角小于30℃的发散角度很好地准直。作为亚波长纳米靶和锥形靶,与箔靶相比,增强激光吸收,我们提出了一种锥形纳米制剂靶试图提高耦合效率。与纳米制品靶相比,能量耦合效率从34%增强到超过68%。详细的模拟表明,这种增强归因于倾斜的倾斜发病率和锥形目标的聚焦。此外,锥形纳米层次的靶使热电子更好地准确。圆锥形纳米水泵靶用于改善质子束加速度的总质子能量转换效率。结果表明通过锥形纳米水靶的目标后侧的热电子的数量和能量的显着提高。与普通目标相比,该领域增加了几次。我们观察平均质子能量的增强和总激光质子能量转换效率为105%。这种增强归因于纳米新闻和锥形配置。质子束与小于28℃的发散角度很好地准直。

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