Axiomatic and operational connections between the -norm of coherence and negativity
arXiv:1704.02896 · doi:10.1103/PhysRevA.97.022342
Abstract
Quantum coherence plays a central role in various research areas. The -norm of coherence is one of the most important coherence measures that are easily computable, but it is not easy to find a simple interpretation. We show that the -norm of coherence is uniquely characterized by a few simple axioms, which demonstrates in a precise sense that it is the analog of negativity in entanglement theory and sum negativity in the resource theory of magic-state quantum computation. We also provide an operational interpretation of the -norm of coherence as the maximum entanglement, measured by the negativity, produced by incoherent operations acting on the system and an incoherent ancilla. To achieve this goal, we clarify the relation between the -norm of coherence and negativity for all bipartite states, which leads to an interesting generalization of maximally correlated states. Surprisingly, all entangled states thus obtained are distillable. Moreover, their entanglement cost and distillable entanglement can be computed explicitly for a qubit-qudit system.
5+7 pages, 1 figure, published in PRA
References in corpus (12)
- Measuring Quantum Coherence with Entanglement
- Distillation of secret key and entanglement from quantum states
- Application of a resource theory for magic states to fault-tolerant quantum computing
- Negativity and contextuality are equivalent notions of nonclassicality
- Maximally coherent mixed states: Complementarity between maximal coherence and mixedness
- Operational one-to-one mapping between coherence and entanglement measures
- Wigner function negativity and contextuality in quantum computation on rebits
- Interferometric visibility and coherence
- Quantum uncertainty relation using coherence
- Logarithmic coherence: Operational interpretation of -norm coherence
- Coherence and entanglement measures based on Rényi relative entropies
- Negativity Bounds for Weyl-Heisenberg Quasiprobability Representations
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