Institut für Theoretische Physik, Universität Ulm, Ulm D-89069, Germany.
Phys Rev Lett. 2010 Jul 30;105(5):050403. doi: 10.1103/PhysRevLett.105.050403. Epub 2010 Jul 28.
We address the problem of quantifying the non-markovian character of quantum time evolutions of general systems in contact with an environment. We introduce two different measures of non-markovianity that exploit the specific traits of quantum correlations and are suitable for opposite experimental contexts. When complete tomographic knowledge about the evolution is available, our measure provides a necessary and sufficient condition to quantify strictly the non-markovianity. In the opposite case, when no information whatsoever is available, we propose a sufficient condition for non-markovianity. Remarkably, no optimization procedure underlies our derivation, which greatly enhances the practical relevance of the proposed criteria.
我们解决了一般与环境相互作用的系统量子演化的非马尔可夫性质的量化问题。我们引入了两种不同的非马尔可夫性度量,利用了量子相关性的特定特征,适用于相反的实验背景。当完整的演化全量子信息可用时,我们的度量提供了严格量化非马尔可夫性的必要和充分条件。在相反的情况下,当没有任何信息可用时,我们提出了非马尔可夫性的充分条件。值得注意的是,我们的推导没有优化过程,这大大提高了所提出的标准的实际相关性。