A superconductor is a natural source of spin-entangled spatially separated electron pairs. Although the first Cooper-pair splitter devices have been realized recently, an experimental confirmation of the spin state and the entanglement of the emitted electron pairs has been lacking up to now. In this paper, a method is proposed to confirm the spin-singlet character of individual split Cooper pairs. Two quantum dots (QDs), each of them holding one spin-prepared electron, serve as the detector of the spin state of a single Cooper pair that is forced to split when it tunnels out from the superconductor to the QDs. The number of charges on the QDs, measured at the end of the procedure, carries information on the spin state of the extracted Coop...
A Cooper pair splitter consists of two quantum dots side-coupled to a conventional superconductor. U...
A Cooper-pair (CP) splitter is a device capable of spatially separating a pair of entangled electron...
A key element in quantum computing applications is the ability to measure non-local correlations, kn...
Funding Information: The work was supported by Academy of Finland through the Finnish Centre of Exce...
We propose and analyze a method for single shot measurement of the total spin of a two electron syst...
Cooper pair splitters hold utility as a platform for investigating the entanglement of electrons in ...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
Spin-orbit interaction provides a spin filtering effect in carbon nanotube based Cooper pair splitte...
In most naturally occurring superconductors, electrons with opposite spins are paired up to form Coo...
Entanglement is a valuable resource for quantum computing and information technologies. A promising ...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
New strategies to generate and to detect spin-entangled pairs of electrons in mesoscopic solid-state...
Correlations are fundamental in describing many body systems - not only in natural sciences. However...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
A Cooper pair splitter consists of two quantum dots side-coupled to a conventional superconductor. U...
A Cooper-pair (CP) splitter is a device capable of spatially separating a pair of entangled electron...
A key element in quantum computing applications is the ability to measure non-local correlations, kn...
Funding Information: The work was supported by Academy of Finland through the Finnish Centre of Exce...
We propose and analyze a method for single shot measurement of the total spin of a two electron syst...
Cooper pair splitters hold utility as a platform for investigating the entanglement of electrons in ...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
Spin-orbit interaction provides a spin filtering effect in carbon nanotube based Cooper pair splitte...
In most naturally occurring superconductors, electrons with opposite spins are paired up to form Coo...
Entanglement is a valuable resource for quantum computing and information technologies. A promising ...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
New strategies to generate and to detect spin-entangled pairs of electrons in mesoscopic solid-state...
Correlations are fundamental in describing many body systems - not only in natural sciences. However...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
In most naturally occurring superconductors, electrons with opposite spins form Cooper pairs. This i...
A Cooper pair splitter consists of two quantum dots side-coupled to a conventional superconductor. U...
A Cooper-pair (CP) splitter is a device capable of spatially separating a pair of entangled electron...
A key element in quantum computing applications is the ability to measure non-local correlations, kn...