174 / 2026-04-01 08:32:04
Dual-Time X-ray Radiography Driven by Picosecond Petawatt Lasers
picosecond petawatt laser,dual-time radiography,inertial confinement fusion,high-Z shell target
Abstract Accepted
Yu Minghai / Research Center of Laser Fusion; Science and Technology on Plasma Physics Laboratory; China Academy
The development of multi-temporal high-energy X-ray radiography utilizing picosecond petawatt laser beams holds significant application potential in high-energy-density physics, including inertial confinement fusion (ICF) and material dynamics. This technique enables single-shot acquisition of high-resolution radiographic images at multiple evolution stages of dynamic processes, overcoming the limitations of traditional single-pulse picosecond radiography due to inconsistent initial conditions and improving experimental efficiency. Utilizing the dual-pulse picosecond laser configuration at the Shenguang-II Upgrade facility, we designed and implemented a dual-temporal radiography scheme for diagnosing the implosion dynamics of indirectly driven high-Z shell target. Single-shot dual-temporal radiographs were successfully obtained, revealing implosion characteristics such as implosion asymmetry, areal density evolution and average implosion velocity. These findings establish a technical foundation for advancing multi-temporal X-ray diagnostics using picosecond petawatt lasers, offering substantial implications for ICF research.
Important Date
  • May 12

    2026

    Conference Date

  • Apr 15 2026

    Draft paper submission deadline

  • May 12 2026

    Registration deadline

Sponsored By
National Key Laboratory of Plasma Physics, Laser Fusion Research Center, China Academy of Engineering Physics
Xiamen University