We introduce a fully coherent way for directed state transport of an atom in 1D optical lattices. In this method the state of an atom (quantum information) transfer by regularly performing phase shifts on the lattice potential during the free evolution of the system. This method use for realizing quantum gates and entanglement generation by bringing two qubits in the proximity of each other and let them interact. Our scheme is robust against possible imperfections in the experimental setups and is fully accessible to the current experiments
We show how the spin independent scattering of two initially distant qubits, say, in distinct traps ...
Disclosed are apparatus and methods that provide for a coherent quantum state transfer of informatio...
Abstract. Neutral atoms excited to Rydberg states can interact with each other via dipole-dipole int...
We introduce a fully coherent way for directed transport of localized atoms in optical lattices by r...
We show that the inherent entanglement of the ground state of strongly correlated systems can be exp...
The quantum tunneling of correlated atoms in an optical lattice is investigated in the presence of a...
We study a string of neutral atoms with nearest neighbor interaction in a 1D beam splitter configura...
Abstract: We describe a general technique that allows for an ideal transfer of quantum correlations ...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
We study a string of neutral atoms with nearest neighbor interaction in a 1D beam splitter configura...
We present a scheme for generating entanglement between two spatially separated systems from the spa...
We investigate the possibility of realizing effective quantum gates between two atoms in distant cav...
Transferring quantum states efficiently between distant nodes of an information processing circuit i...
We present an economical dynamical control scheme to perform quantum computation on a one dimensiona...
We show how the spin independent scattering of two initially distant qubits, say, in distinct traps ...
We show how the spin independent scattering of two initially distant qubits, say, in distinct traps ...
Disclosed are apparatus and methods that provide for a coherent quantum state transfer of informatio...
Abstract. Neutral atoms excited to Rydberg states can interact with each other via dipole-dipole int...
We introduce a fully coherent way for directed transport of localized atoms in optical lattices by r...
We show that the inherent entanglement of the ground state of strongly correlated systems can be exp...
The quantum tunneling of correlated atoms in an optical lattice is investigated in the presence of a...
We study a string of neutral atoms with nearest neighbor interaction in a 1D beam splitter configura...
Abstract: We describe a general technique that allows for an ideal transfer of quantum correlations ...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
We study a string of neutral atoms with nearest neighbor interaction in a 1D beam splitter configura...
We present a scheme for generating entanglement between two spatially separated systems from the spa...
We investigate the possibility of realizing effective quantum gates between two atoms in distant cav...
Transferring quantum states efficiently between distant nodes of an information processing circuit i...
We present an economical dynamical control scheme to perform quantum computation on a one dimensiona...
We show how the spin independent scattering of two initially distant qubits, say, in distinct traps ...
We show how the spin independent scattering of two initially distant qubits, say, in distinct traps ...
Disclosed are apparatus and methods that provide for a coherent quantum state transfer of informatio...
Abstract. Neutral atoms excited to Rydberg states can interact with each other via dipole-dipole int...