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April 1, 1961Journal of Applied Physics55 citationsOpen Access

Current Flow across Grain Boundaries inn-Type Germanium. I

RMR. K. Mueller

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Abstract

A theory of the current flow across grain boundaries in n-type germanium is given. In the temperature range where carrier generation in the space charge region can be neglected and for donor concentrations in the bulk larger than 1014/cm3, the current is carried essentially by electrons crossing the barrier, the zero bias conductance is independent of the donor concentration and is given by G0=2.2·108Te−φ0/kT. The apparent activation energy φ0 is directly related to the barrier height. The current for applied voltages which are large compared to kT/q fails to saturate. The deviation for saturation is related to the density of states in the boundary band. At sufficiently low temperatures the carrier generation in the space-charge region is the rate-determining process for the current flow across the boundary.

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R. K. Mueller (1961) studied this question.

synapsesocial.com/papers/6a6f78bda2d7cf2e39c28f75https://doi.org/10.1063/1.1736062
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