Experimental detection of nonclassical correlations in mixed-state quantum computation
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- Type
- article
- Published
- 2011-05-11
- Cited by
- 90
- References
- 5
- Access
- Open access
- OpenAlex
- https://openalex.org/W1973305475
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:119185761
Keywords
Quantum discord, Qubit, Quantum computer, Quantum entanglement, Physics
References
Cited by
- Phonon-mediated generation of quantum correlations between quantum dot qubits
- Quantum dissonance and deterministic quantum computation with a single qubit
- Characterization, Verification and Control for Large Quantum Systems
- On Experimental Deterministic Quantum Computation with One Quantum Bit (DQC1)
- Quantum discord andclassical correlations in the bond-charge Hubbard model: Quantum phasetransitions, off-diagonal long-range order, and violation of themonogamy property for discord
- Universal freezing of quantum correlations within the geometric approach
- Information theoretic resources in quantum theory
- Measuring quantumness: from theory to observability in interferometric setups
- Computational speed-up with a single qudit
- The relation between the quantum discord and quantum teleportation: The physical interpretation of the transition point between different quantum discord decay regimes
- Experimental characterization of Gaussian quantum discord generated by four-wave mixing
- Scales of Time Where the Quantum Discord Allows an Efficient Execution of the DQC1 Algorithm
- Quantum entanglement and quantum discord in magnetoactive materials (Review Article)
- Interplay between computable measures of entanglement and other quantum correlations
- Stationary quantum correlations in Tavis–Cumming model induced by continuous dephasing process
- THEORETICAL AND EXPERIMENTAL ASPECTS OF QUANTUM DISCORD AND RELATED MEASURES
- The geometric approach to quantum correlations: computability versus reliability
- Effects of Magnetic Field on the Coherence Time of a Parabolic Quantum Dot Qubit
- Quantumness of correlations revealed in local measurements exceeds entanglement
- Quantum discord versus second-order MQ NMR coherence intensity in dimers
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