Current correlations in the interacting Cooper-pair beam-splitter
arXiv:1109.2476 · doi:10.1103/PhysRevB.85.035419
Abstract
We propose an approach allowing the computation of currents and their correlations in interacting multiterminal mesoscopic systems involving quantum dots coupled to normal and/or superconducting leads. The formalism relies on the expression of branching currents and noise crossed correlations in terms of one- and two-particle Green's functions for the dots electrons, which are then evaluated self-consistently within a conserving approximation. We then apply this to the Cooper-pair beam-splitter setup recently proposed [L. Hofstetter et al. Nature (London) 461 960 (2009); Phys. Rev. Lett. 107 136801 (2011); L. G. Herrmann et al. Phys. Rev. Lett. 104 026801 (2010)], which we model as a double quantum dot with weak interactions, connected to a superconducting lead and two normal ones. Our method not only enables us to take into account a local repulsive interaction on the dots, but also to study its competition with the direct tunneling between dots. Our results suggest that even a weak Coulomb repulsion tends to favor positive current cross correlations in the antisymmetric regime (where the dots have opposite energies with respect to the superconducting chemical potential).
References in corpus (7)
- Evidence for crossed Andreev reflection in superconductor-ferromagnet hybrid structures
- Non-Local Correlations in Normal Metal-Superconducting Systems
- Co-tunneling current and shot noise in quantum dots
- Superconducting proximity effect in interacting double-dot systems
- Current and noise correlations in a double dot Cooper pair beam splitter
- Non-equilibrium frequency-dependent noise through a quantum dot: A real time functional renormalization group approach
- Shot noise and Coulomb effects on non-local electron transport in normal-superconducting-normal heterostructures
Cited by in corpus (37)
- Modulation of Majorana-Induced Current Cross-Correlations by Quantum Dots
- Magnetic field tuning and quantum interference in a Cooper pair splitter
- Spin-resolved Andreev transport through double-quantum-dot Cooper pair splitters
- Spin-polarized Andreev transport influenced by Coulomb repulsion through two quantum dot system
- Multipair DC-Josephson Resonances in a biased all-superconducting Bijunction
- Tomography of Majorana Fermions with STM Tips
- Interplay between direct and crossed Andreev reflections in hybrid nano-structures
- Enhancement of crossed Andreev reflection in normal-superconductor-normal junction of thin topological insulator
- Crossed Andreev reflection in spin-polarized chiral edge states due to the Meissner effect
- Double quantum dot Cooper-pair splitter at finite couplings
- From Cooper pair splitting to the non-local spectroscopy of a Shiba state
- Current cross-correlations in double quantum dot based Cooper pair splitters with ferromagnetic leads
- Noise and full counting statistics of a Cooper pair splitter
- Probing individual split Cooper-pairs using the spin qubit toolkit
- Scattering Theory of Non-Equilibrium Noise and Delta current fluctuations through a quantum dot
- Microwave spectroscopy of a Cooper pair beam splitter
- Electron waiting times in hybrid junctions with topological superconductors
- Splitting efficiency and interference effects in a Cooper pair splitter based on a triple quantum dot with ferromagnetic contacts
- Proposal for the observation of nonlocal multipair production: the biSQUID
- Theory of non-equilibrium noise in general multi-terminal superconducting hydrid devices: application to multiple Cooper pair resonances
- Non local quantum state engineering with the Cooper pair splitter beyond the Coulomb blockade regime
- Transport and noise properties of a normal metal-superconductor-normal metal junction with mixed singlet and chiral triplet pairings
- Effects of Coulomb interaction on photon-assisted current noises through a quantum dot
- Full counting statistics of interacting quantum dots contacted by a normal metal and a superconductor
- Cooper pair splitting in a nanoSQUID geometry at high transparency
- Full Counting Statistics of Generic Spin Entangler with Quantum Dot-Ferromagnet detectors
- Cross-correlations in a quantum dot Cooper pair splitter with ferromagnetic leads
- Single-photon pump by Cooper-pair splitting
- Nonlocal Andreev transport through a quantum dot in a magnetic field: Interplay between Kondo, Zeeman, and Cooper-pair correlations
- Quasiparticle Andreev reflection in the Laughlin fractions of the fractional quantum Hall effect
- Levitons in correlated nano-scale systems
- Entangled Photon-Pair Emission in Waveguide Circuit QED from a Cooper Pair Splitter
- Generic model for Cooper pair splitting
- Currents and current correlations in a topological superconducting nanowire beam splitter
- Periodic source of energy-entangled electrons in helical states coupled to a BCS superconductor
- Efficient Cooper Pair Splitting Without Interactions
- Three-body Fermi-liquid corrections for Andreev transport through quantum dots