Quantum dissonance and deterministic quantum computation with a single qubit
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Summary
This work provides conclusive evidence that there are instances where quantum entanglement is not present in any part of this model, nevertheless it establishes the fact that quantum dissonance present in fully separable (FS) states provide power to DQC1 model.
- Type
- article
- Published
- 2013-12-05
- Cited by
- 6
- References
- 50
- Access
- Open access
- OpenAlex
- https://openalex.org/W189907349
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:117925153
Keywords
Quantum entanglement, Quantum computer, Quantum discord, Quantum capacity, Qubit
References
- Quantum discord: a measure of the quantumness of correlations.
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- QUANTUM DISCORD AND QUANTUM COMPUTING — AN APPRAISAL
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- Quantum Computation and Quantum Information
- Maximally discordant mixed states of two qubits
- Quantum discord for general two-qubit states: Analytical progress
- Computable measure of entanglement
- Experimental quantum computing without entanglement.
- Calculation of quantum discord for qubit-qudit or N qubits
- Density Matrix in Quantum Mechanics and Distinctness of Ensembles Having the Same Compressed Density Matrix
- Optimal measurements to access classical correlations of two-qubit states
- Quantum discord of two-qubit X states
- Classification of mixed three-qubit states.
- Taming multiparticle entanglement.
Cited by
- Robustness measure of hybrid intra-particle entanglement, discord, and classical correlation with initial Werner state
- Coherent control of quantum systems as a resource theory
- Of Local Operations and Physical Wires
- Quantum dissonance in chiral graphene nanoribbons
- Measurement-Based Quantum Correlations for Quantum Information Processing
- Quantum Correlations in Single Qubit Metrology
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