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Demonstration of a Shock-Timing Experiment in a CH Layer at the ShenGuang Ⅲ Laser Facility

机译:神光Ⅲ激光装置CH层中的冲击定时实验演示

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摘要

Shock-timing experiments are indispensable to inertial confinement fusion mainly because the timing of multiple shock waves is crucial to understanding the processes of laser irradiation of targets.Investigations into shock waves driven by a two-step radiation pulse in polystyrene (CH) capsule targets are experimentally conducted at the ShenGuang Ⅲ laser facility.Differing from the traditional shock-timing implementation in which one shock wave could catch up with another one in solid CH,in this experiment,the second shock front in a rarefaction CH layer is observed through velocity interferometry.This second shock could also be made to converge with rarefaction waves within only a few micrometers of the CH capsule by designing the two-shock coalescence time.A shock-timing diagnostic technique to tune the multi-shock convergence in the CH capsule can thereby be achieved.The experimental results in the CH layer are quasi-quantitatively interpreted using streamlines simulated with the Multi-1D program.The experimental results are expected to offer important information for target structure and laser pulse design,both of which are important for realizing inertial confinement fusion.
机译:冲击定时实验对于惯性约束聚变是必不可少的,这主要是因为多重冲击波的时机对理解靶标的激光辐照过程至关重要。对聚苯乙烯(CH)胶囊靶中由两步辐射脉冲驱动的冲击波的研究是实验是在神光Ⅲ激光设备上进行的。与传统的冲击定时方法不同,在传统的冲击定时方法中,一个冲击波可以追赶固体CH中的另一个冲击波,在本实验中,通过速度干涉法观察到稀疏CH层中的第二个冲击锋通过设计两次震荡的合并时间,还可以使第二次震荡与CH囊仅几微米内的稀疏波会聚,从而通过震荡时机诊断技术来调节CH震囊中的多震波收敛。利用Mu模拟的流线对CH层中的实验结果进行了准定量解释。 lti-1D程序。实验结果有望为靶结构和激光脉冲设计提供重要信息,两者对实现惯性约束聚变都具有重要意义。

著录项

  • 来源
    《中国物理快报:英文版》 |2018年第5期|69-72|共4页
  • 作者单位

    Research Center of Laser Fusion, China Academic of Engineering and Physics, Mianyang 621900;

    Research Center of Laser Fusion, China Academic of Engineering and Physics, Mianyang 621900;

    Research Center of Laser Fusion, China Academic of Engineering and Physics, Mianyang 621900;

    Research Center of Laser Fusion, China Academic of Engineering and Physics, Mianyang 621900;

    Research Center of Laser Fusion, China Academic of Engineering and Physics, Mianyang 621900;

    Research Center of Laser Fusion, China Academic of Engineering and Physics, Mianyang 621900;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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