arXiv · 1006.1790
Superconducting proximity effect in interacting double-dot systems
Abstract
We study subgap transport from a superconductor through a double quantum dot with large on-site Coulomb repulsion to two normal leads. Non-local superconducting correlations in the double dot are induced by the proximity to the superconducting lead, detectable in non-local Andreev transport that splits Cooper pairs in locally separated, spin-entangled electrons. We find that the $I$--$V$ characteristics are strongly asymmetric: for a large bias voltage of certain polarity, transport is blocked by populating the double dot with states whose spin symmetry is incompatible with the superconductor. Furthermore, by tuning gate voltages one has access to splitting of the Andreev excitation energies, which is visible in the differential conductance.
Explore related subjects
Keep this discovery
James Eldridge, Marco G. Pala, Michele Governale, Jürgen König. 2010-06-09. Superconducting proximity effect in interacting double-dot systems. https://doi.org/10.1103/physrevb.82.184507
Cite the original work for its findings. Save a collection to share your selection of sources.