English

First radiative shock experiments on the SG-II laser

Plasma Physics 2021-07-01 v1

Abstract

We report on the design and first results from experiments looking at the formation of radiative shocks on the Shenguang-II (SG-II) laser at the Shanghai Institute of Optics and Fine Mechanics in China. Laser-heating of a two-layer CH/CH-Br foil drives a \sim40 km/s shock inside a gas-cell filled with argon at an initial pressure of 1 bar. The use of gas-cell targets with large (several mm) lateral and axial extent allows the shock to propagate freely without any wall interactions, and permits a large field of view to image single and colliding counter-propagating shocks with time resolved, point-projection X-ray backlighting (20\sim20 μ\mum source size, 4.3 keV photon energy). Single shocks were imaged up to 100 ns after the onset of the laser drive allowing to probe the growth of spatial non-uniformities in the shock apex. These results are compared with experiments looking at counter-propagating shocks, showing a symmetric drive which leads to a collision and stagnation from \sim40 ns onward. We present a preliminary comparison with numerical simulations with the radiation hydrodynamics code ARWEN, which provides expected plasma parameters for the design of future experiments in this facility.

Cite

@article{arxiv.2103.17052,
  title  = {First radiative shock experiments on the SG-II laser},
  author = {Francisco Suzuki-Vidal and Thomas Clayson and Chantal Stehlé and Uddhab Chaulagain and Jack W. D. Halliday and Mingying Sun and Lei Ren and Ning Kang and Huiya Liu and Baoqiang Zhu and Jianqiang Zhu and Carolina de Almeida Rossi and Teodora Mihailescu and Pedro Velarde and Manuel Cotelo and John M. Foster and Colin N. Danson and Christopher Spindloe and Jeremy P. Chittenden and Carolyn Kuranz},
  journal= {arXiv preprint arXiv:2103.17052},
  year   = {2021}
}

Comments

16 pages, 5 figures, accepted for publication in High Power Laser Science and Engineering (25 March 2021)

R2 v1 2026-06-24T00:44:02.193Z