High Power Laser Science and Engineering, Volume. 2, Issue 4, 04000e39(2014)

High energy density physics research at IMP, Lanzhou, China

Yongtao Zhao*, Rui Cheng, YuyuWang, Xianming Zhou, Yu Lei, Yuanbo Sun, Ge Xu, Jieru Ren, Lina Sheng, Zimin Zhang, and and Guoqing Xiao
Author Affiliations
  • Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China
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    Figures & Tables(6)
    Typical radiographic images (right) of static objects (left) by the method of marginal range radiography.
    A radiographic image (right) of a static object (left) by the method of magnetic imaging radiography.
    The experimental terminal for studies of low energy ion and plasma interaction at the IMP.
    The scheme of the plasma device.
    The layout of the HIAF complex and the two terminals for HEDP research.
    • Table 1. Key parameters related to HEDP research at the HIAF and other advanced heavy ion drivers (for a uranium beam).

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      Table 1. Key parameters related to HEDP research at the HIAF and other advanced heavy ion drivers (for a uranium beam).

      SIS-18FAIR (Ph-I) HIAF (Ph-1) 
      0.06 kJ15 kJ41 kJ
      1–0.5 mm
      130 ns50 ns130–30 ns
      6–
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    Yongtao Zhao, Rui Cheng, YuyuWang, Xianming Zhou, Yu Lei, Yuanbo Sun, Ge Xu, Jieru Ren, Lina Sheng, Zimin Zhang, and Guoqing Xiao. High energy density physics research at IMP, Lanzhou, China[J]. High Power Laser Science and Engineering, 2014, 2(4): 04000e39

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    Paper Information

    Category: High Energy Density Physics and High Power Laser 2014

    Received: May. 30, 2014

    Accepted: Oct. 21, 2014

    Published Online: Jan. 13, 2015

    The Author Email: Yongtao Zhao (zhaoyt@impcas.ac.cn)

    DOI:10.1017/hpl.2014.44

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