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Sausage instabilities in the electron current layer and its role in the concept of fast ignition

机译:电子电流层中的香肠不稳定性及其在快速点火概念中的作用

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摘要

The fast ignition concept of laser fusion utilizes hot electron produced at the surface of the target by an incident intense laser pulse for the creation of the hot spot for ignition. As the hot electrons move inwards to the core of the precompressed target, the electrons from the background plasma provide a return shielding current. Three-dimensional PIC simulations have shown that intense Weibel, tearing and coalescence instabilities take place which organize the current distribution into a few current filaments. In each of these filaments the central core region constitutes a current due to the fast electrons propagating inwards towards the pellet core, while the outer cylindrical shell region carries the return shielding current. The presence of instabilities and their subsequent nonlinear development can hinder the propagation of fast electrons towards the core influencing the location of the hot spot for ignition. Earlier studies showing the existence of sausage-like modes were carried out in the non-relativistic limit and under the assumption of equal electron densities of the fast and the cold electrons. The fast electron density, in general, differs considerably from the background plasma density as it is dependent on the incident laser intensity. This paper incorporates relativistic effects and also studies thhe dependence of the growth rate on the fast electron density. Finally, nonlinear saturation of the instability and its impact on the stopping of the fast electron motion towards the core have also been invbestigated using numerical simulations. The simulations have, however, currently been carried out for non-relativistic dynamics. The results show that the sheared velocity profile of the channel gets flattened, causing an effective drop in the inward moving current.
机译:激光聚变的快速点火概念利用入射强激光脉冲在靶表面产生的热电子来产生点火热点。当热电子向内移动到预压缩目标的核心时,来自背景等离子体的电子将提供返回屏蔽电流。三维PIC仿真显示,发生了严重的Weibel,撕裂和聚结不稳定性,这些不稳定性将电流分布组织成几根电流丝。在这些细丝中的每一个中,由于快速电子向内向丸状芯传播,而中心圆柱形区域构成了电流,而圆柱形外壳区域则承载了返回屏蔽电流。不稳定性的存在及其随后的非线性发展会阻碍快速电子向磁芯的传播,从而影响着火热点的位置。较早的研究表明,在非相对论的极限内,在快电子和冷电子的电子密度相等的假设下,存在类似香肠的模式。通常,快速电子密度与背景等离子体密度有很大不同,因为它取决于入射激光强度。本文结合了相对论效应,并且研究了增长率对快速电子密度的依赖性。最后,还使用数值模拟研究了不稳定性的非线性饱和及其对电子向核快速运动停止的影响。然而,目前已经针对非相对论动力学进行了仿真。结果表明,通道的剪切速度曲线变平,从而导致向内移动电流的有效下降。

著录项

  • 来源
    《Nuclear fusion》 |2004年第1期|p. 98-105|共8页
  • 作者单位

    Institute for Plasma Research, Bhat, Gandhinagar, 382428, India;

    Institute for Plasma Research, Bhat, Gandhinagar, 382428, India;

    Institute for Plasma Research, Bhat, Gandhinagar, 382428, India;

    Institute for Plasma Research, Bhat, Gandhinagar, 382428, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

  • 入库时间 2022-08-18 00:49:48

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