Locally Inaccessible Information as a Fundamental Ingredient to Quantum Information
arXiv:1106.0289 · doi:10.1088/1367-2630/14/1/013027
Abstract
Quantum discord (QD) measures the fraction of the pairwise mutual information that is locally inaccessible, in a multipartite system. Fundamental aspects related to two important measures in quantum information theory the Entanglement of Formation (EOF) and the conditional entropy, can be understood in terms of the distribution of this form of Local Inaccessible Information (LII). As such, the EOF for an arbitrarily mixed bipartite system AB can be related to the gain or loss of LII due to the extra knowledge that a purifying ancillary system E has on the pair AB. Similarly, a clear meaning of the negativity of the conditional entropy for AB is given. We exemplify by showing that these relations elucidate important and yet not well understood quantum features, such as the bipartite entanglement sudden death and the distinction between EOF and QD for quantifying quantum correlation. For that we introduce the concept of LII flow which quantifies the LII shared in multipartite system when a sequential local measurements are performed.
We relate the entanglement and the conditional entropy exclusively as a function of quantum discord. Final Version
References in corpus (12)
- Finite-Time Disentanglement via Spontaneous Emission
- Quantum discord and the power of one qubit
- Robustness of quantum discord to sudden death
- Quantum information can be negative
- Classical and quantum correlations under decoherence
- No-local-broadcasting theorem for quantum correlations
- Sudden Birth Versus Sudden Death of Entanglement in Multipartite Systems
- Interpreting quantum discord through quantum state merging
- Operational interpretations of quantum discord
- Conservation law for distributed entanglement of formation and quantum discord
- Correlations in local measurements on a quantum state, and complementarity as an explanation of nonclassicality
- Entanglement irreversibility from quantum discord and quantum deficit
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- Competitions between quantum correlations in the quantum-memory-assisted entropic uncertainty relation
- Upper bound and shareability of quantum discord based on entropic uncertainty relations
- Quantum correlations between each qubit in a two-atom system and the environment in terms of interatomic distance
- Quantum discord as a resource in quantum communication
- Quantum-correlating power of local quantum channels
- Why the Entanglement of Formation is not generally monogamic
- Reducing the entropic uncertainty lower bound in the presence of quantum memory via local operation and classical communication
- Extracting Information from Qubit-Environment Correlations
- On two-qubit states ordering with quantum discords
- Discording power of quantum evolutions
- Genuine multipartite system-environment correlations in decoherent dynamics
- Multipartite Quantum Correlations in Open Quantum Systems
- Entanglement of formation for a class of -dimensional systems
- Monogamy deficit for quantum correlation in multipartite quantum system
- Multipartite quantum correlations in even and odd spin coherent states
- Reducing Computational Complexity of Quantum Correlations
- Quantum discord of SU(2) invariant states
- Correlations in emitters coupled to plasmonic waveguides
- Shielding quantum discord through continuous dynamical decoupling
- Tomographic characterisation of correlations in a photonic tripartite state
- Global quantum correlations in tripartite nonorthogonal states and monogamy properties
- Multipartite monogamous relations for Entanglement and Discord
- Various correlations in a Heisenberg XXZ spin chain both in thermal equilibrium and under the intrinsic decoherence
- Flow of quantum correlations in noisy two-mode squeezed microwave states
- Revealing Tripartite Quantum Discord with Tripartite Information Diagram
- Strong Subadditivity Lower Bound and Quantum Channels
- Correlation Redistribution by Causal Horizons
- Dynamics of quantum discord in the purification process