Local Quantum Uncertainty and Bounds on Quantumness for Orthogonally invariant class of states
arXiv:1304.7019 · doi:10.1007/s11128-014-0850-7
Abstract
Local quantum uncertainty (in short LQU) was introduced by Girolami et. al.(Phy. Rev. Lett. \textbf{110}, 240402) as a measure of quantum uncertainty in a quantum state as achievable on single local measurement. However, such quantity do satisfy all necessary criteria to serve as measure of discord like quantum correlation and it has no closed formula except only for system. Here, we consider orthogonal invariant class of states which includes both the Werner and Isotropic class of states and explore the possibility of closed form formula. Further, we extend our quest to the possibility of closed form of geometric discord and measurement induced nonlocality for this class. We also provide a comparative study of the bounds of general quantum correlations with entanglement, as measured by negativity, for an interesting subclass of states.
13 pages, 5 figures, revtex, revised version, comments welcome
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Cited by in corpus (6)
- The dynamic behaviors of local quantum uncertainty for three-qubit X states under decoherence channels
- Local quantum uncertainty for multipartite quantum systems
- Local Quantum Uncertainty in Two-Qubit Separable States: A Case Study
- Local quantum uncertainty of a two-qubit XY Heisenberg model with different Dzyaloshinskii-Moriya couplings
- Local quantum uncertainty of SU(2) invariant states
- Dynamics of local quantum uncertainty among cavity-reservoir qubits