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Hopping conductivity in granular disordered systems

Ping ShengCorporate Research Science Laboratory, Exxon Research and Engineering Company, P. O. Box 45, Linden, New Jersey 07036J. KlafterCorporate Research Science Laboratory, Exxon Research and Engineering Company, P. O. Box 45, Linden, New Jersey 07036
1983en
ABI

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We study the temperature dependence of conductivity for high-resistivity granular disordered systems in terms of the critical-path method. It is shown that the low-field conductivity $\mathrm{exp}(\ensuremath{-}\frac{A}{{T}^{\ensuremath{\alpha}}})$ with $\ensuremath{\alpha}=\frac{1}{2}$ is obeyed over large temperature ranges with possible crossovers to $\ensuremath{\alpha}=\frac{1}{4}$ at low temperatures and to $\ensuremath{\alpha}>\frac{1}{2}$ at high temperatures. The temperatures at which the crossovers occur depend on the distribution of grain sizes. Comparisons are made with experiments and with other theoretical approaches.

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