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Fast electron energy transport in solid density and compressed plasma

机译:固体密度和压缩等离子体中的快速电子能量传输

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摘要

We provide a review of selected experiments on fast electron transport in solids and plasmas following laser-matter interaction at relativistic intensities. Particular attention is given to precise measurements of intense laser pulses, fast electron energy transfer and the mean kinetic energy of the fast electrons. We discuss in detail mechanism of fast electron energy loss in solid and warm dense targets. We show that stopping due to resistive electric field and collimation due to resistive magnetic field play significant roles in fast electron dynamics. It has also been shown that reducing the size of the target can significantly affect the Kα production from the targets. The use of reduced-mass target can also increase temperature up to 1 keV level, which provides an excellent platform for fast electron transport without assembling the fuel. The pre-pulse is a significant issue in fast ignition for fast electron coupling to the compressed core. Indeed, we have shown using a variety of targets that the laser pre-pulse can significantly reduce transfer of energy farther into the target. In this article, we show that a significant progress has been made in understanding the critical issues of fast electron transport pertinent to fast ignition (FI). This understanding will facilitate a better target design for large scale FI integrated experiments when laser facilities become available.
机译:我们提供了相对论强度下激光与物质相互作用后固体和等离子体中快速电子传输的精选实验综述。特别注意强激光脉冲的精确测量,快速电子能量传递和快速电子的平均动能。我们详细讨论了固体和温暖致密目标中快速电子能量损失的机理。我们表明,由于电阻电场而停止和由于电阻磁场的准直在快速电子动力学中起重要作用。还显示减小靶的大小可显着影响靶的Kα产生。使用质量降低的靶材还可以将温度提高到1 keV,这为无需组装燃料就能快速进行电子传输提供了一个极好的平台。对于将电子快速耦合到压缩铁芯而言,预脉冲是快速点火中的重要问题。确实,我们已经表明,使用各种目标,激光预脉冲可以显着减少能量进一步转移到目标中。在本文中,我们表明,在理解与快速点火(FI)相关的快速电子传输的关键问题方面已经取得了重大进展。这种理解将有助于在激光设备可用时为大规模FI集成实验提供更好的目标设计。

著录项

  • 来源
    《Nuclear fusion》 |2014年第5期|054004.1-054004.22|共22页
  • 作者单位

    Department of Physics, Clarendon Laboratory, University of Oxford, Parks Road, Oxford OX1 3PU, UK,STFC Rutherford Appleton Laboratory, Harwell Oxford, Oxford OX11 0QX, UK;

    University Bordeaux-CNRS-CEA, CELIA (Centre Lasers Intenses et Applications), UMR 5107, 33405 Talence, France;

    Laboratoire pour l'Utilisation des Lasers Intenses, Ecole Polytechnique, 91128 Palaiseau Cedex, France;

    Department of Mechanical and Aerospace Engineering, University of California, San Diego, CA, USA;

    Graduate School of Engineering, Osaka University, Suita, Osaka 565, Japan;

    Laboratory for Laser Energetics, University of Rochester, 251 East River Road, Rochester, NY 14623-1212, USA;

    Lawrence Livermore National Laboratory, PO Box 808, Livermore, CA 94551-0808, USA;

    Lawrence Livermore National Laboratory, PO Box 808, Livermore, CA 94551-0808, USA;

    University Bordeaux-CNRS-CEA, CELIA (Centre Lasers Intenses et Applications), UMR 5107, 33405 Talence, France;

    STFC Rutherford Appleton Laboratory, Harwell Oxford, Oxford OX11 0QX, UK;

    University Bordeaux-CNRS-CEA, CELIA (Centre Lasers Intenses et Applications), UMR 5107, 33405 Talence, France;

    General Atomics, PO Box 85608, San Diego, CA 92186-5608, USA;

    Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai, 200240, People's Republic of China;

  • 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
  • 关键词

    fast ignition; fast electrons; X-ray spectroscopy; energy transport; solid density plasmas; compressed matter; warm dense matter;

    机译:快速点火;快速电子X射线光谱;能源运输;固体密度等离子体压缩物温暖致密物质;

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