We study numerically the resistance fluctuations, {δ}R, in a disordered metallic microstructure with several probes within a single quantum coherent region. The strong influence of the probes causes {δ}R to depend on the geometry of the coherent region. In a particular four-probe structure, {δ}R is only weakly dependent on the voltage probe separation, in agreement with experiment, while the strong dependence of {δ}R on separation in other structures should be experimentally observable. Nonlocal fluctuations decay slowly as the distance between the current path and voltage probes increases.
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Baranger et al. (1988) studied this question.
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