We propose a simple setup of three coupled quantum dots in the Coulomb blockade regime as a source for spatially separated currents of spin-entangled electrons. The entanglement originates from the singlet ground state of a quantum dot with an even number of electrons. To preserve the entanglement of the electron pair during its extraction to the drain leads, the electrons are transported through secondary dots. This prevents one-electron transport by energy mismatch, while joint transport is resonantly enhanced by conservation of the total two-electron energy
Using electrostatic gates to control the electron positions, we present a new controlled-NOT gate ba...
We present a theory of electronic properties and the spin-blockade phenomena in a gated linear tripl...
20 pages, 6 figuresInternational audienceAn electron spin state teleportation scheme is described in...
We propose schemes for generating spatially-separated spin entanglement in systems of two quantum do...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Spin qubits based on interacting spins in double quantum dots have been demonstrated successfully. R...
The adiabatic passage of two correlated electrons in three coupled quantum dots is shown to provide ...
The adiabatic passage of two correlated electrons in three coupled quantum dots is shown to provide ...
Spin-orbit qubit (SOQ) is the dressed spin by the orbital degree of freedom through a strong spin-or...
We show that a large entangled current can be produced from a very simple passive device: a cluster ...
We show that a large entangled current can be produced from a very simple passive device: a cluster ...
We propose a solid-state quantum structure capable of generating the Einstein-Podolsky-Rosen (EPR) e...
We present Coulomb blockade measurements of two few-electron quantum dots in series configured such ...
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...
Using electrostatic gates to control the electron positions, we present a new controlled-NOT gate ba...
We present a theory of electronic properties and the spin-blockade phenomena in a gated linear tripl...
20 pages, 6 figuresInternational audienceAn electron spin state teleportation scheme is described in...
We propose schemes for generating spatially-separated spin entanglement in systems of two quantum do...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Spin qubits based on interacting spins in double quantum dots have been demonstrated successfully. R...
The adiabatic passage of two correlated electrons in three coupled quantum dots is shown to provide ...
The adiabatic passage of two correlated electrons in three coupled quantum dots is shown to provide ...
Spin-orbit qubit (SOQ) is the dressed spin by the orbital degree of freedom through a strong spin-or...
We show that a large entangled current can be produced from a very simple passive device: a cluster ...
We show that a large entangled current can be produced from a very simple passive device: a cluster ...
We propose a solid-state quantum structure capable of generating the Einstein-Podolsky-Rosen (EPR) e...
We present Coulomb blockade measurements of two few-electron quantum dots in series configured such ...
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...
Using electrostatic gates to control the electron positions, we present a new controlled-NOT gate ba...
We present a theory of electronic properties and the spin-blockade phenomena in a gated linear tripl...
20 pages, 6 figuresInternational audienceAn electron spin state teleportation scheme is described in...