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Non-ablative capillary z-pinch for plasma-based waveguide
Authors:J. Kaiser  M. Liška  O. Samek  T. Egri  A. Ritucci  A. Reale  G. Tomassetti  L. Reale  L. Palladino  S. V. Kukhlevsky  F. Flora  L. Mezi  A. Faenov  T. Pikuz
Affiliation:(1) Institute of Physical Engineering, Brno University of Technology, Technickà 2, 616 69 Brno, Czech Republic;(2) Phys. Dept., Univ of L"rsquo"Aquila, gc LNGS of INFN, INFM via Vetoio, 67010 Coppito, L"rsquo"Aquila, Italy;(3) Department of Experimental Physics, University of Pécs, Ifjúság ú. 6, 7624 Pécs, Hungary;(4) ENEA Dip. Innovazione, Divisione Fisica Applicata, Centro Ricerche Frascati C.P. 65, 00044, Italy;(5) MISDC of VNIFTRI Mendeleevo, Moscow Region, 141570, Russia
Abstract:The conditions for the formations of plasma-based waveguide in non-ablative argon-filled capillary discharge are studied theoretically. The pinch dynamics is simulated using magneto-hydrodynamic code originally developed and utilized to find proper conditions for operation of capillary-discharge Ar+8 soft x-ray laser. The presented results show that the ablation-free capillary z-pinch provides conditions that are suitable for guiding of high-intensity laser pulses on the earlier stages of the plasma compression.
Keywords:capillary z-pinch  plasma waveguide
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