Chruściński Dariusz, Kimura Gen, Kossakowski Andrzej, Shishido Yasuhito
Institute of Physics, Faculty of Physics, Astronomy and Informatics Nicolaus Copernicus University, Grudziądzka 5/7, 87-100 Toruń, Poland.
College of Systems Engineering and Science, Shibaura Institute of Technology, Saitama 330-8570, Japan.
Phys Rev Lett. 2021 Jul 30;127(5):050401. doi: 10.1103/PhysRevLett.127.050401.
A general property of relaxation rates in open quantum systems is discussed. We find an interesting constraint for relaxation rates that universally holds in fairly large classes of quantum dynamics, e.g., weak coupling regimes, as well as for entropy nondecreasing evolutions. We conjecture that this constraint is universal, i.e., it is valid for all quantum dynamical semigroups. The conjecture is supported by numerical analysis. Moreover, we show that the conjectured constraint is tight by providing a concrete model that saturates the bound. This universality marks an essential step toward the physical characterization of complete positivity as the constraint is directly verifiable in experiments. It provides, therefore, a physical manifestation of complete positivity. Our conjecture also has two important implications: it provides (i) a universal constraint for the spectra of quantum channels and (ii) a necessary condition to decide whether a given channel is consistent with Markovian evolution.
讨论了开放量子系统中弛豫率的一个普遍性质。我们发现了一个关于弛豫率的有趣约束,它在相当大类的量子动力学中普遍成立,例如弱耦合 regime,以及对于熵不减少的演化。我们推测这个约束是普遍的,即它对所有量子动力学半群都有效。该推测得到了数值分析的支持。此外,我们通过提供一个饱和该界限的具体模型表明所推测的约束是严格的。这种普遍性标志着朝着将完全正定性进行物理表征迈出的重要一步,因为该约束在实验中是直接可验证的。因此,它提供了完全正定性的一种物理表现。我们的推测还有两个重要含义:它提供了(i)量子通道谱的一个普遍约束,以及(ii)判断给定通道是否与马尔可夫演化一致的一个必要条件。