arXiv · cond-mat/0007333
Zero-bias transport anomaly in metallic nanobridges: Magnetic field dependence and universal conductance fluctuations
Abstract
We present data of transport measurements through a metallic nanobridge exhibiting diffusive electron transport. A logarithmic temperature dependence and a zero-bias anomaly in the differential conductance are observed, independent of magnetic field. The data can be described by a single scaling law. The theory of electron-electron interaction in disordered systems, adapted to the case of finite-size systems in non-equilibrium, yields quantitative agreement with experiment. Measurements of universal conductance functuations support the assumptions of the theory about the electronic phase coherence.
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H. B. Weber, R. Häussler, H. v. Löhneysen, J. Kroha. 2000-07-21. Zero-bias transport anomaly in metallic nanobridges: Magnetic field dependence and universal conductance fluctuations. https://doi.org/10.1007/978-94-010-0427-5_6
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