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首页> 外文期刊>Plasma Science, IEEE Transactions on >Development of a Platform at the Matter in Extreme Conditions End Station for Characterization of Matter Heated by Intense Laser-Accelerated Protons
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Development of a Platform at the Matter in Extreme Conditions End Station for Characterization of Matter Heated by Intense Laser-Accelerated Protons

机译:基于极端条件终端站的一个平台的开发,用于激光激光加速质子加热物质的表征

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摘要

High-intensity short-pulse lasers have made possible the generation of energetic proton beams, unlocking numerous applications in high energy density science. One such application is uniform and isochoric heating of materials to the warm dense matter (WDM) state. We have developed a new experimental platform to simultaneously create and probe WDM at the matter in extreme conditions (MEC) end station at the Linac Coherent Light Source (LCLS). The short pulse optical laser (delivering up to 1 J in 45 fs) and the ultrabright LCLS X-ray laser with tunable frequency, respectively, deliver high power required to heat materials to WDM and precision-timed high-resolution X-rays to probe them. The laser-accelerated proton beam driven from a flat 1.5- $mu ext{m}$ Cu foil was first measured then directed to a secondary sample of Al or polypropylene (PP), typically 300– $400~mu ext{m}$ away. The time evolution of the sample electron temperature was measured using streaked optical pyrometry, where we observed a peak temperature of 0.9 ± 0.15 eV on the rear surface of an Al sample heated by the proton beam. Simulations using the hybrid-PIC code LSP and the rad-hydro code HELIOS show that a measured proton beam can heat Al to approximately 4 eV and PP to 1 eV if instead focused by a hemispherical Cu target. Through additional LSP simulations, we anticipate creating hotter WDM states (~20 eV) by increasing the laser energy to 10 J and keeping the other laser parameters fixed.
机译:高强度短脉冲激光器使能量质子梁的产生,使得在高能量密度科学中解锁了许多应用。一种这样的应用是对温致密物质(WDM)状态的材料均匀和同工加热。我们开发了一个新的实验平台,在LinaC相干光源(LCLS)的极端条件(MEC)终端电台中同时创建和探测WDM。短脉冲光学激光器(在45 fs中提供高达1J)和具有可调谐频率的超级LCLS X射线激光器,可提供高功率,以向WDM和精密定时的高分辨率X射线加热以探测他们。激光加速的质子束从平坦的1.5-驱动<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ mu text {m} $ 首先测量Cu箔,然后涉及Al或聚丙烯(PP)的二次样品,通常为300-<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ 400〜 mu text {m} $ 离开。使用条纹光学热测定法测量样品电子温度的时间演变,其中我们在由质子束加热的Al样品的后表面上观察到0.9±0.15eV的峰值温度。使用Hybrid-PIC代码LSP和Rad-Hydro Code Helios的模拟表明,如果通过半球形Cu靶聚焦,则测量的质子束可以将Al到大约4eV和PP至1eV。通过额外的LSP仿真,我们预计通过将激光能量增加到10 j并保持其他激光参数来实现更热的WDM状态(〜20eV)。

著录项

  • 来源
    《Plasma Science, IEEE Transactions on》 |2020年第8期|2751-2758|共8页
  • 作者单位

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    SLAC National Accelerator Laboratory Menlo Park CA USA;

    General Atomics San Diego CA USA;

    General Atomics San Diego CA USA;

    General Atomics San Diego CA USA;

    Lawrence Livermore National Laboratory Livermore CA USA;

    Lawrence Livermore National Laboratory Livermore CA USA;

    Laboratory for Laser Energetics University of Rochester NY USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

    Center for Energy Research University of California at San Diego La Jolla CA USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser beams; Heating systems; Protons; Measurement by laser beam; X-ray lasers; Particle beams; Temperature measurement;

    机译:激光束;加热系统;质子;通过激光束测量;X射线激光器;粒子束;温度测量;

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