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Numerical Simulation on Expansion Process of Ablation Plasma Induced by Intense Pulsed Ion Beam |
TAN Chang;LIU Yue;WANG Xiao-Gang;MA Teng-Cai |
State Key Laboratory of Materials Modification by Laser, Ion and Electron Beams, Department of Physics,
Dalian University of Technology, Dalian 116024 |
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Cite this article: |
TAN Chang, LIU Yue, WANG Xiao-Gang et al 2006 Chin. Phys. Lett. 23 1530-1532 |
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Abstract We present a one-dimensional time-dependent numerical model for the expansion process of ablation plasma induced by intense pulsed ion beam (IPIB). The evolutions of density, velocity, temperature, and pressure of the ablation plasma of the aluminium target are obtained. The numerical results are well in agreement with the relative experimental data. It is shown that the expansion process of ablation plasma induced by IPIB includes strongly nonlinear effects and that shock waves appear during the propagation of the ablation plasma.
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Keywords:
52.65.Kj
52.77.Fv
52.35.Mw
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Published: 01 June 2006
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PACS: |
52.65.Kj
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(Magnetohydrodynamic and fluid equation)
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52.77.Fv
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(High-pressure, high-current plasmas)
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52.35.Mw
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(Nonlinear phenomena: waves, wave propagation, and other interactions (including parametric effects, mode coupling, ponderomotive effects, etc.))
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