Double-Pulse Laser-Driven Jets on OMEGA

被引:0
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作者
S. Sublett
J. P. Knauer
I. V. Igumenshchev
A. Frank
D. D. Meyerhofer
机构
[1] Laboratory for Laser Energetics,Department of Physics and Astronomy
[2] University of Rochester,Department of Physics and Astronomy
[3] Laboratory for Laser Energetics,Department of Physics and Astronomy
[4] University of Rochester,Department of Mechanical Engineering
[5] Laboratory for Laser Energetics,undefined
[6] University of Rochester,undefined
[7] University of Rochester,undefined
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关键词
Laser experiments; Plasma jet; Episodic outflow;
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学科分类号
摘要
A double-pulse laser drive is used to create episodic supersonic plasma jets that propagate into a low density ambient medium. These are among the first laser experiments to generate pulsed outflow. The temporal laser-intensity profile consists of two 1-ns square pulses separated by 9.6 ns. The laser is focused on a truncated conical plug made of medium Z material inserted into a high-Z washer. Unloading material from the plug is collimated within the cylindrical washer hole, then propagates into the low-Z foam medium. The resulting jet is denser than the ambient medium. Double-pulse jet evolution is compared to that driven by a single laser pulse. The total drive energy is the same for both jets, as if a source with fixed energy generated a jet from either one or two bursts. Radiographs taken at 100 ns show that a single-pulse jet was broader than the double-pulse jet, as predicted by hydrodynamic simulations. Since the initial shock creating the jet is stronger when all the energy arrives in a single pulse, the jet material impacts the ambient medium with higher initial velocity. Detailed comparisons between single- and double-pulsed jet rheology and shock structure are presented. 2-D hydrodynamic simulations are compared to the experimental radiographs.
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页码:47 / 50
页数:3
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