We demonstrate theoretically a scheme for cluster-state generation, based on atomic ensembles and the dipole-blockade mechanism. In the protocol, atomic ensembles serve as single-qubit systems. Therefore, we review single-qubit operations on qubit defined as collective states of atomic ensemble. Our entangling protocol requires nearly identical single-photon sources, one ultracold ensemble per physical qubit, and regular photodetectors. The general entangling procedure is presented, as well as a procedure that generates in a single step Q-qubit GHZ states with success probability p(success) similar to eta(Q/2), where eta is the combined detection and source efficiency. This is significantly more efficient than any known robust probabilistic...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Photonic cluster states are a crucial resource for optical quantum computing. Recently a quantum dot...
We propose an efficient scheme to engineer multiatom entanglement by detecting cavity decay through ...
Thesis chapter. The fragility of quantum information is a fundamental constraint faced by anyone try...
Cluster states can be used to perform measurement-based quantum computation. The cluster state is a ...
Atomic ensembles, comprising clouds of atoms addressed by laser fields, provide an attractive system...
Entanglement is a powerful concept with an enormous potential for scientific and technological advan...
We propose an experimentally feasible scheme to generate Greenberger-Horne-Zeilinger (GHZ) type of m...
We propose a scheme to generate cluster states of atomic qubits by using cavity quantum electrodynam...
A central challenge for many quantum technologies concerns the generation of large entangled states ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Waveguide QED offers the possibility of generating strong coherent atomic interactions either throug...
We propose an approach to optical quantum computation in which a deterministic entangling quantum ga...
We propose and analyse a scheme for single-rail-encoded arbitrary multi-qubit quantum-state generati...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Photonic cluster states are a crucial resource for optical quantum computing. Recently a quantum dot...
We propose an efficient scheme to engineer multiatom entanglement by detecting cavity decay through ...
Thesis chapter. The fragility of quantum information is a fundamental constraint faced by anyone try...
Cluster states can be used to perform measurement-based quantum computation. The cluster state is a ...
Atomic ensembles, comprising clouds of atoms addressed by laser fields, provide an attractive system...
Entanglement is a powerful concept with an enormous potential for scientific and technological advan...
We propose an experimentally feasible scheme to generate Greenberger-Horne-Zeilinger (GHZ) type of m...
We propose a scheme to generate cluster states of atomic qubits by using cavity quantum electrodynam...
A central challenge for many quantum technologies concerns the generation of large entangled states ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Waveguide QED offers the possibility of generating strong coherent atomic interactions either throug...
We propose an approach to optical quantum computation in which a deterministic entangling quantum ga...
We propose and analyse a scheme for single-rail-encoded arbitrary multi-qubit quantum-state generati...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Photonic cluster states are a crucial resource for optical quantum computing. Recently a quantum dot...
We propose an efficient scheme to engineer multiatom entanglement by detecting cavity decay through ...