Cryogenic jet targets for high power laser experiments


Cryogenic jet targets for high power laser experiments

Rehwald, M.; Göde, S.; Obst, L.; Zeil, K.; Metzkes-Ng, J.; Schlenvoigt, H.; Kraft, S. D.; Brack, F.; Wolter, S.; Kazak, L.; Gauthier, M.; Roedel, C.; Kluge, T.; Fiuza, F.; Mishra, R.; Ruyer, C.; Sommer, P.; Loeser, M.; Ziegler, T.; Curry, C.; Macdonald, M.; Schumaker, W.; Glenzer, S.; Cowan, T.; Schramm, U.

We present a pure condensed hydrogen jet as a renewable and debris-free target for high power laser experiments. The jet's nominal electron density is approximately 30 times the critical density and its diameter can be varied to be 2µm, 5µm or 10µm and thus allowing to study the regime of relativistic transparency. Different ion diagnostics reveal mono-species proton acceleration in the laser incidence plane around the wire-like target. Radiochromic film stacks in forward direction display signatures of filament-like structures, stemming from a Weibel-like instability generated at the rear side of the target in the underdense plasma region.

  • Lecture (Conference)
    MoU HZDR-ILE and HZDR-KPSI, 07.-08.12.2017, Dresden, Deutschland

Permalink: https://www.hzdr.de/publications/Publ-26566