Some general properties of unified entropies
arXiv:1012.5356 · doi:10.1007/s10955-011-0231-x
Abstract
Basic properties of the unified entropies are examined. The consideration is mainly restricted to the finite-dimensional quantum case. Bounds in terms of ensembles of quantum states are given. Both the continuity in Fannes' sense and stability in Lesche's sense are shown for wide ranges of parameters. In particular, uniform estimates are obtained for the quantum Rényi entropies. Stability properties in the thermodynamic limit are discussed as well. It is shown that the unified entropies enjoy both the subadditivity and triangle inequality for a certain range of parameters. Non-decreasing of all the unified entropies under projective measurement is proved.
11 pages, no figures. Minor grammatical changes are made. To appear in J. Stat. Phys
References in corpus (4)
Cited by in corpus (20)
- Reflected entropy in random tensor networks
- New Quantum Algorithms for Computing Quantum Entropies and Distances
- Postselection-free learning of measurement-induced quantum dynamics
- Entanglement polygon inequality in qudit systems
- Unification of multi-qubit polygamy inequalities
- Continuity of characteristics of composite quantum systems
- Unified entropies and quantum speed limits for nonunitary dynamics
- Tightening monogamy and polygamy relations of unified entanglement in multipartite systems
- Tighter constraints of multiqubit entanglement in terms of unified entropy
- The dynamical -Rényi entropies of local Hamiltonians grow at most linearly in time
- 1+1D Hadrons Minimize their Biparton Renyi Free Energy
- Uncertainty and certainty relations for successive projective measurements of a qubit in terms of Tsallis' entropies
- Tight uniform continuity bound for a family of entropies
- Entanglement and entropy in multipartite systems: a useful approach
- Quantum Speed Limits Based on the Sharma-Mittal Entropy
- Family of two-parameter multipartite entanglement measures
- Deviation from maximal entanglement for mid-spectrum eigenstates of local Hamiltonians
- Quantifying magic via quantum Jensen-Shannon divergence
- Efficient Simulation of Low Temperature Physics in One-Dimensional Gapless Systems
- Unified monogamy relations for the generalized -class states beyond qubits