Non-local electron transport and Coulomb effects in three-terminal metallic conductors

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Abstract

We demonstrate a close relation between Coulomb effects in non-local electron transport and non-local shot noise in three-terminal metallic conductors. Provided the whole structure is normal, cross-correlations in shot noise are negative and Coulomb interaction tends to suppress both local and non-local conductances of the system. The behavior of normal-superconducting- normal structures at subgap energies is entirely different. In the tunneling limit non-local differential conductance of such systems is found to have an S-like shape and it can turn negative at non-zero bias. At high transmissions crossed Andreev reflection yields positive noise cross-correlations and Coulomb anti-blockade of non-local electron transport.

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Golubev, D. S., & Zaikin, A. D. (2012). Non-local electron transport and Coulomb effects in three-terminal metallic conductors. In Journal of Physics: Conference Series (Vol. 338). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/338/1/012009

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