The observation of quantum transport phenomena in metals is limited by the eventual loss of phase coherence of the conduction electrons on the length scale L_φ. We address the question of whether L_φ is the same in the context of different quantum transport phenomena. Specifically, we have measured L_φ from two different experiments on the same sample. The experiments are magnetoresistance and $1/f$ noise versus magnetic field, and the samples are thin-Ag films in the quasi-two-dimensional regime. We determine L_φ from fits of the magnetoresistance data to weak-localization theory (WL), and from fits of the noise versus magnetic field to universal conductance fluctuation theory (UCF). We find that the two values of L_φ are the same at temperatures above about 10 K, but that L_φ in the UCF experiment is shorter than that in the WL experiment at lower temperatures. This result is consistent with a recent theoretical discussion of quasielastic electron-electron scattering in disordered metals.
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Hoadley et al. (1999) studied this question.
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