English

Laser-driven strong magnetostatic fields with applications to charged beam transport and magnetized high energy-density physics

Plasma Physics 2018-05-23 v1

Abstract

Powerful laser-plasma processes are explored to generate discharge currents of a few 100100\,kA in coil targets, yielding magnetostatic fields (B-fields) in excess of 0.50.5\,kT. The quasi-static currents are provided from hot electron ejection from the laser-irradiated surface. According to our model, describing qualitatively the evolution of the discharge current, the major control parameter is the laser irradiance Ilasλlas2I_{\mathrm{las}}\lambda_{\mathrm{las}}^2. The space-time evolution of the B-fields is experimentally characterized by high-frequency bandwidth B-dot probes and by proton-deflectometry measurements. The magnetic pulses, of ns-scale, are long enough to magnetize secondary targets through resistive diffusion. We applied it in experiments of laser-generated relativistic electron transport into solid dielectric targets, yielding an unprecedented 5-fold enhancement of the energy-density flux at 60μm60 \,\mathrm{\mu m} depth, compared to unmagnetized transport conditions. These studies pave the ground for magnetized high-energy density physics investigations, related to laser-generated secondary sources of radiation and/or high-energy particles and their transport, to high-gain fusion energy schemes and to laboratory astrophysics.

Keywords

Cite

@article{arxiv.1712.07175,
  title  = {Laser-driven strong magnetostatic fields with applications to charged beam transport and magnetized high energy-density physics},
  author = {J. J. Santos and M. Bailly-Grandvaux and M. Ehret and A. V. Arefiev and D. Batani and F. N. Beg and A. Calisti and S. Ferri and R. Florido and P. Forestier-Colleoni and S. Fujioka and M. A. Gigosos and L. Giuffrida and L. Gremillet and . J. Honrubia and S. Kojima and Ph. Korneev and K. F. F. Law and J. -R. Marquès and A. Morace and C. Mossé and O. Peyrusse and S. Rose and M. Roth and S. Sakata and G. Schaumann and F. Suzuki-Vidal and V. T. Tikhonchuk and T. Toncian and N. Woolsey and Z. Zhang},
  journal= {arXiv preprint arXiv:1712.07175},
  year   = {2018}
}

Comments

11 pages, 7 figures, invited APS