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Linear and Nonlinear Response Theory with Applications 3
Conductivity via Nonequilibrium Statistical Physics
Aspects of Linear and Nonlinear Electronic Conduction
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absorption amorphous applied approach approximation associated assumed atomic average band becomes calculated carrier charge concentration conductivity consider constant contribution correlation coupling defined density dependence derived described determined discussed distribution effective electric field electron energy equation equilibrium excitation expected experimental expression fact factor field fluctuations follows formula frequency function given gives glasses holes hopping integral interaction interest involving lattice limit linear liquid localized mass materials matrix mean measurements mechanism metal method mobility mode motion noise observed obtained operator optical particle phase phonon Phys physical polaron potential present probability problem processes properties quantity quantum mechanically random range relation resistivity response scattering semiconductors shown simple softon Solids solution structure temperature theorem theory thermal tion transition transport wave zero