Vol. 37, Issue 1-2, pp. 73-82 (2007)

Vol. 37 Issue 1 pp. 73-82

Plasma jet generation by flyer disk collision with massive target

Andrzej KASPERCZUK, Tadeusz PISARCZYK, Stefan BORODZIUK, Sergey Yu. GUS’KOV, Jiri ULLSCHMIED, Edward KROUSKY, Karel MASEK, Miroslav PFEIFER, Karel ROHLENA, Jiri SKALA, Milan KALAL, Jiri LIMPOUCH, Pawel PISARCZYK

Keywords

ablative acceleration, plasma jet, flyer disk, interferometry, macroparticle, double target, linear electron density, crater, shock wave

Abstract

In this paper, results from experiments with Al flyer targets (disks with a diameter of 300 mm and a thickness of 6 mm) accelerated at first to high velocities by PALS iodine laser pulses (with an energy of 130 J, pulse duration of 400 ps, a wavelength of 1.315 mm, and laser spot diameter of 250 mm), subsequently creating craters after their collisions with massive Al targets (placed at a distance of the order of 200 mm) are presented. To measure the plasma density evolution a three frame interferometric system was employed. The experimental results demonstrate that the flyer disk–massive target collision generates an axial plasma jet corresponding to a flat shock wave propagating in a massive target. This form of the shock wave was deduced from a crater trapezoidal shape which was reconstructed by means of crater replica technique.

Vol. 37
Issue 1
pp. 73-82

2.9 MB

Corresponding address

Optica Applicata
Wrocław University of Science and Technology
Faculty of Fundamental Problems of Technology
Wybrzeże Wyspiańskiego 27
50-370 Wrocław, Poland

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Wrocław University of Science and Technology
Faculty of Fundamental Problems of Technology
Wybrzeże Wyspiańskiego 27
50-370 Wrocław, Poland

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