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Free Charged Particles and a Field
Atoms and Field
13 other sections not shown
approximation with respect calculate Chap classical coefficient coincides collision integral completely ionized plasma condition contribution correlation function correlation radius corresponding Coulomb plasma critical point density matrix density of field density of fluctuations described determined dipole approximation dissipative dr dp dt dr electromagnetic field electrons employ equilibrium field fluctuations field oscillators field strengths Fokker formula Fourier component free charged particles frequency given Hamiltonian interaction ions kinetic equations kinetic theory Landau theory Langevin equation Langevin source large-scale fluctuations laser Lorentz matrix element Maxwell distribution mean field microscopic moments Na(x nonequilibrium nonlinear obtained operator order parameter partially ionized plasma permittivity phase density phase transition phonon polarization approximation polarization vector potential processes quantum radiation random source resonant result right-hand side Sect set of equations small-scale fluctuations solution spatial spectral density spectral line broadening substitute system of atoms taken into account temperature thermodynamic limit tion transverse field zero-order approximation