Two-qubit non-Markovianity induced by a common environment
arXiv:1302.4259 · doi:10.1103/PhysRevA.87.052109
Abstract
We study non-Markovianity as backflow of information in two-qubit systems. We consider a setting where, by changing the distance between the qubits, one can interpolate between independent reservoir and common reservoir scenarios. We demonstrate that non-Markovianity can be induced by the common reservoir and single out the physical origin of this phenomenon. We show that two-qubit non-Markovianity coincides with instances of non-divisibility of the corresponding dynamical map, and we discuss the pair of states maximizing information flowback. We also discuss the issue of additivity for the measure we use and in doing so, give an indication of its usefulness as a resource for multipartite quantum systems.
9 pages, 5 figures, Published version with minor modifications
References in corpus (6)
- On measures of non-Markovianity: divisibility vs. backflow of information
- Optimal state pairs for non-Markovian quantum dynamics
- Collective decoherence of cold atoms coupled to a Bose-Einstein condensate
- Non-Markovian probes in ultracold gases
- Limitation of entanglement due to spatial qubit separation
- Incomplete pure dephasing of N-qubit entangled W states
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