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- W2068090132 abstract "The thermalization of an electron-phonon system in a nonequilibrium state characterized by a fractal distribution of phonon excitations is calculated in a novel way, which takes into account the unusual, inverse power-law type distribution of phonon energies. The calculations are done from the first principles, based on a nonequilibrium statistical operator combined with the recently proposed generalized, nonextensive thermostatistics. As a result the usual linear (Newtonian) energy transfer rate Q-|Apensuremath{propto}-(${mathrm{T}}_{mathrm{p}}$-${mathrm{T}}_{mathrm{e}}$) is replaced by a nonlinear rate Q-|Apensuremath{propto}-(${mathrm{T}}_{mathrm{p}}^{mathrm{q}}$-${mathrm{T}}_{mathrm{e}}^{mathrm{q}}$), where qensuremath{geqslant}1 is related to the fractality of the excitation energy distribution. Consequences of this result for a thermal relaxation of the nonequilibrium phonon system are discussed." @default.
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- W2068090132 date "1997-06-01" @default.
- W2068090132 modified "2023-09-23" @default.
- W2068090132 title "Thermalization of an electron-phonon system in a nonequilibrium state characterizedby fractal distribution of phonon excitations" @default.
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- W2068090132 doi "https://doi.org/10.1103/physreve.55.7759" @default.
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