Collapse of the quantum correlation hierarchy links entropic uncertainty to entanglement creation
arXiv:1203.3153 · doi:10.1103/PhysRevA.86.062334
Abstract
Quantum correlations have fundamental and technological interest, and hence many measures have been introduced to quantify them. Some hierarchical orderings of these measures have been established, e.g., discord is bigger than entanglement, and we present a class of bipartite states, called premeasurement states, for which several of these hierarchies collapse to a single value. Because premeasurement states are the kind of states produced when a system interacts with a measurement device, the hierarchy collapse implies that the uncertainty of an observable is quantitatively connected to the quantum correlations (entanglement, discord, etc.) produced when that observable is measured. This fascinating connection between uncertainty and quantum correlations leads to a reinterpretation of entropic formulations of the uncertainty principle, so-called entropic uncertainty relations, including ones that allow for quantum memory. These relations can be thought of as lower-bounds on the entanglement created when incompatible observables are measured. Hence, we find that entanglement creation exhibits complementarity, a concept that should encourage exploration into "entanglement complementarity relations".
19 pages, 2 figures. Added Figure 1 and various remarks to improve clarity of presentation
References in corpus (17)
- The classical-quantum boundary for correlations: discord and related measures
- Quantum discord and the power of one qubit
- Distillation of secret key and entanglement from quantum states
- Quantum information can be negative
- Structure of states which satisfy strong subadditivity of quantum entropy with equality
- Leftover Hashing Against Quantum Side Information
- Conjectured Strong Complementary Information Tradeoff
- Linking Quantum Discord to Entanglement in a Measurement
- All non-classical correlations can be activated into distillable entanglement
- Entanglement Theory and the Second Law of Thermodynamics
- Uncertainty relations from simple entropic properties
- Correlations in local measurements on a quantum state, and complementarity as an explanation of nonclassicality
- Entanglement irreversibility from quantum discord and quantum deficit
- Linking a distance measure of entanglement to its convex roof
- Unification of different views of decoherence and discord
- The quantumness of correlations revealed in local measurements exceeds entanglement
- A Condition for the Nullity of Quantum Discord
Cited by in corpus (10)
- Entropic Uncertainty Relations and their Applications
- Quantum discord and its allies: a review
- The effects of mixedness and entanglement on the properties of the entropic uncertainty in Heisenberg model with Dzyaloshinski-Moriya interaction
- Negativity of quantumness and its interpretations
- Competitions between quantum correlations in the quantum-memory-assisted entropic uncertainty relation
- Experimental entanglement activation from discord in a programmable quantum measurement
- Complementary sequential measurements generate entanglement
- Quantumness of correlations, quantumness of ensembles and quantum data hiding
- The effects of different quantum feedback types on the tightness of the variance-based uncertainty
- Variance-based uncertainty relation for incompatible observers