We propose a solid-state quantum structure capable of generating Einstein-Podolsky-Rosen (EPR) electron pairs using a parametric electron pumping idea and the Coulomb blockade phenomenon. The quantum structure consists of two coupled quantum dots and four leads. Our scheme is easy to implement, and it does not impose special requirements on the leads. By employing the parametric pumping idea, harmful processes can be avoided and only two quantum dots are needed. Furthermore, the EPR electron pairs are spatially separated
We present the results of recent experiments designed to manipulate the splitting in quantum dots, t...
We show how to prepare four-photon polarization entangled states based on some Einstein-Po...
In this letter, we propose a scheme to buildup a highly coherent solid-state quantum bit (qubit) fro...
We propose a solid-state quantum structure capable of generating the Einstein-Podolsky-Rosen (EPR) e...
We propose a simple setup of three coupled quantum dots in the Coulomb blockade regime as a source f...
We describe a novel mechanism for charge pumping through tunnel-coupled quantum dots in the regime o...
The goal of this thesis is to investigate theoretically the generation and behaviour of multipartite...
We present a proposal for a single-parametric electron pump composed of a quantum dot between two un...
We propose schemes for generating spatially-separated spin entanglement in systems of two quantum do...
A theoretical scheme is presented for the entanglement of two-electron spin qubits bound in series w...
We propose a method of generating fully entangled electron spin pairs using an open static quantum d...
Using electrostatic gates to control the electron positions, we present a new controlled-NOT gate ba...
We consider the quantum dot entangler device introduced by Oliver et al. [1] coupled to a single pho...
Due to the large energy splitting of the single-electron levels in a small quantum dot, only one sin...
We discuss level schemes of small quantum-dot turnstiles and their applicability in the production o...
We present the results of recent experiments designed to manipulate the splitting in quantum dots, t...
We show how to prepare four-photon polarization entangled states based on some Einstein-Po...
In this letter, we propose a scheme to buildup a highly coherent solid-state quantum bit (qubit) fro...
We propose a solid-state quantum structure capable of generating the Einstein-Podolsky-Rosen (EPR) e...
We propose a simple setup of three coupled quantum dots in the Coulomb blockade regime as a source f...
We describe a novel mechanism for charge pumping through tunnel-coupled quantum dots in the regime o...
The goal of this thesis is to investigate theoretically the generation and behaviour of multipartite...
We present a proposal for a single-parametric electron pump composed of a quantum dot between two un...
We propose schemes for generating spatially-separated spin entanglement in systems of two quantum do...
A theoretical scheme is presented for the entanglement of two-electron spin qubits bound in series w...
We propose a method of generating fully entangled electron spin pairs using an open static quantum d...
Using electrostatic gates to control the electron positions, we present a new controlled-NOT gate ba...
We consider the quantum dot entangler device introduced by Oliver et al. [1] coupled to a single pho...
Due to the large energy splitting of the single-electron levels in a small quantum dot, only one sin...
We discuss level schemes of small quantum-dot turnstiles and their applicability in the production o...
We present the results of recent experiments designed to manipulate the splitting in quantum dots, t...
We show how to prepare four-photon polarization entangled states based on some Einstein-Po...
In this letter, we propose a scheme to buildup a highly coherent solid-state quantum bit (qubit) fro...