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Chapter 4 Hydrodynamics of Laser Plasma as Neutral Fluids. 4.1 Laser Solid Interaction. Linear Heat Conduction. c : c onstant. Heat Diffusion (Linear). Heat Wave by Electron or Radiation. Drunken Walk Model. Finite differential Eq. Nonlinear Heat Wave. 4. 2 Plasma as Fluids.
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Linear Heat Conduction c : constant Heat Diffusion (Linear)
Heat Wave by Electron or Radiation Drunken Walk Model Finite differential Eq. Nonlinear Heat Wave
4. 2 Plasma as Fluids 1. Equation of Continuity 2. Equation of Motion 3. Equation of State P = P(r,T) 4. Equation of Energy
Sound Wave 1. Linearized Equations 3. Propagation Equation 2. Sound Velocity General Solution r1 = f(x-Vst) + g(x+Vst)
Compressibility of Fluids 4. Bulk Modulus 5. Incompressible Fluids 6. Potential Flow 9
Shock Wave 3, Rankin-Hugoniot Relation 1. Nonlinearity P1, V1 P0, V0 2. Shock Waves
Shock Tube Experiment
Simulation Example High-Gain Implosion ILESTA-code
4.3 Ablation Physics Ablation Pressure (Mbar) Experimental Data Laser Intensity (W/cm2)
4.4 Blast Wave Laser BW Supernova BW Laser Self-similar Solution 2/5 R = t 1020 difference
Blast Wave E=109 J TNT 1 ton 100 m 1cm Laser Blast Wave E=100 J
E=1017J H-Bomb 1 Mega Ton TNT
Taylor-Sedov is also called Taylor-Sedov-Neuman Solution von Neuman and ENIAC
E=1044J Supernova Remnant (Cas A)
4.5 Supernova Remnants (SNRs) SN1987A
Young SNRs by Chandra(US X-s) Cas A Kepler Tycho 0.06pc 0.04pc 0.01pc 0.007pc 0.02pc 0.02pc