Cooper pair splitting (CPS) is a process in which the electrons of the naturally occurring spin-singlet pairs in a superconductor are spatially separated using two quantum dots. Here, we investigate the evolution of the conductance correlations in an InAs CPS device in the presence of an external magnetic field. In our experiments the gate dependence of the signal that depends on both quantum dots continuously evolves from a slightly asymmetric Lorentzian to a strongly asymmetric Fano-type resonance with increasing field. These experiments can be understood in a simple three-site model, which shows that the nonlocal CPS leads to symmetric line shapes, while the local transport processes can exhibit an asymmetric shape due to quantum interfe...
Hybrid devices combining quantum dots with superconductors are important building blocks of conventi...
19 pages, 18 figuresWe consider a double quantum dot coupled to two normal leads and one superconduc...
Correlations are fundamental in describing many body systems - not only in natural sciences. However...
peer reviewedA Cooper pair splitter consists of two quantum dots side-coupled to a conventional supe...
A Cooper pair splitter consists of two quantum dots side-coupled to a conventional superconductor. U...
The effect of external magnetic field on the transport properties of double quantum dots coupled to ...
Cooper pair splitting (CPS) is a way to create spatially separated, entangled electron pairs. To thi...
Cooper pair splitting (CPS) is a way to create spatially separated, entangled electron pairs. To thi...
A Cooper pair splitter consists of two quantum dots side-coupled to a conventional superconductor. U...
We investigate theoretically the noise and the full counting statistics of electrons that are emitte...
Quantum entanglement has applications in quantum cryptography and quantum computing as the main and ...
A Cooper-pair (CP) splitter is a device capable of spatially separating a pair of entangled electron...
19 pages, 18 figuresWe consider a double quantum dot coupled to two normal leads and one superconduc...
19 pages, 18 figuresWe consider a double quantum dot coupled to two normal leads and one superconduc...
International audienceWe study subgap transport from a superconductor through a double quantum dot w...
Hybrid devices combining quantum dots with superconductors are important building blocks of conventi...
19 pages, 18 figuresWe consider a double quantum dot coupled to two normal leads and one superconduc...
Correlations are fundamental in describing many body systems - not only in natural sciences. However...
peer reviewedA Cooper pair splitter consists of two quantum dots side-coupled to a conventional supe...
A Cooper pair splitter consists of two quantum dots side-coupled to a conventional superconductor. U...
The effect of external magnetic field on the transport properties of double quantum dots coupled to ...
Cooper pair splitting (CPS) is a way to create spatially separated, entangled electron pairs. To thi...
Cooper pair splitting (CPS) is a way to create spatially separated, entangled electron pairs. To thi...
A Cooper pair splitter consists of two quantum dots side-coupled to a conventional superconductor. U...
We investigate theoretically the noise and the full counting statistics of electrons that are emitte...
Quantum entanglement has applications in quantum cryptography and quantum computing as the main and ...
A Cooper-pair (CP) splitter is a device capable of spatially separating a pair of entangled electron...
19 pages, 18 figuresWe consider a double quantum dot coupled to two normal leads and one superconduc...
19 pages, 18 figuresWe consider a double quantum dot coupled to two normal leads and one superconduc...
International audienceWe study subgap transport from a superconductor through a double quantum dot w...
Hybrid devices combining quantum dots with superconductors are important building blocks of conventi...
19 pages, 18 figuresWe consider a double quantum dot coupled to two normal leads and one superconduc...
Correlations are fundamental in describing many body systems - not only in natural sciences. However...