Quantifying quantum coherence and non-classical correlation based on Hellinger distance
arXiv:1806.10814 · doi:10.1103/PhysRevA.97.062342
Abstract
Quantum coherence and non-classical correlation are key features of quantum world. Quantifying coherence and non-classical correlation are two key tasks in quantum information theory. First, we present a bona fide measure of quantum coherence by utilizing the Hellinger distance. This coherence measure is proven to fulfill all the criteria of a well defined coherence measure, including the strong monotonicity in the resource theories of quantum coherence. In terms of this coherence measure, the distribution of quantum coherence in multipartite systems is studied and a corresponding polygamy relation is proposed. Its operational meanings and the relations between the generation of quantum correlations and the coherence are also investigated. Moreover, we present Hellinger distance-based measure of non-classical correlation, which not only inherits the nice properties of the Hellinger distance including contractivity, and but also shows a powerful analytic computability for a large class of quantum states. We show that there is an explicit trade-off relation satisfied by the quantum coherence and this non-classical correlation.
References in corpus (15)
- Quantum discord and the power of one qubit
- Measuring Quantum Coherence with Entanglement
- Experimental quantum computing without entanglement
- Observable measure of quantum coherence in finite dimensional systems
- A computable measure of nonclassicality for light
- The Fidelity and Trace Norm Distances for Quantifying Coherence
- On the role of entanglement and correlations in mixed-state quantum computation
- Quantum Coherence via Skew Information and Its Polygamy
- Max- relative entropy of coherence: an operational coherence measure
- Quantum discord bounds the amount of distributed entanglement
- Maximally coherent mixed states: Complementarity between maximal coherence and mixedness
- Operational one-to-one mapping between coherence and entanglement measures
- Linking a distance measure of entanglement to its convex roof
- Estimation on geometric measure of quantum coherence
- Duality relation between coherence and path information in the presence of quantum memory
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- Quantum metrology and coherence
- Tomographic Witnessing and Holographic Quantifying of Coherence
- Common Coherence Witnesses and Common Coherent States
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- Witnessing quantum coherence with prior knowledge of observables
- Unambiguous state discrimination with intrinsic coherence
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- Quantum Coherence Bounds the Distributed Discords
- Characterizing quantum ensemble using geometric measure of quantum coherence
- Distance-based approach to quantum coherence and nonclassicality