Statistics of the One-Electron Current in a One-Dimensional Mesoscopic Ring at Arbitrary Magnetic Fields
A.S. Cattaneo, A. Gamba, I.V. Kolokolov

TL;DR
This paper calculates the moments and distribution of the one-electron current in a disordered one-dimensional ring subjected to any magnetic flux, providing insights into quantum transport properties.
Contribution
It introduces a comprehensive method to determine the moments and distribution function of the one-electron current at arbitrary magnetic fields in disordered rings.
Findings
Derived the moments and distribution function of the current.
Analyzed effects of disorder and magnetic flux on current statistics.
Provided a framework for understanding quantum transport in mesoscopic rings.
Abstract
The set of moments and the distribution function of the one-electron current in a one-dimensional disordered ring with arbitrary magnetic flux are calculated.
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