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Power Generation from Fusion Reactions
11 other sections not shown
ablation acceleration adiabatic amplitude assume beam becomes boundary Bremsstrahlung Brillouin Brillouin scattering calculated collision components compression computations constant curves density gradient differential equations discussed dispersion equation distribution function effects electric field emission emitted entropy fluid flux given growth rate heat conduction hot electrons illustrated in Fig implosion incidence inhomogeneous initial instability integral intensity interaction ionization Landau Landau damping Langmuir waves laser fusion laser light laser power linear longitudinal waves magnetic field maximum Maxwell's equations momentum motion neutron nonlinear obtain oscillations parameter particle pellet phase Phys physics plane plasma oscillations Plasma Physics Poisson's equation ponderomotive force potential pressure problem propagation pulse quantities quantum radiation radius ratio reaction region resonance scale scattering shell shock wave shown in Fig shows solitons solution space spherical target temperature tensor theory thermal transverse waves vector velocity wave number wavelength X-ray