Department of Physics, Georgetown University, Washington, DC 20057, USA.
Phys Rev Lett. 2012 Mar 16;108(11):110601. doi: 10.1103/PhysRevLett.108.110601. Epub 2012 Mar 14.
An isolated quantum many-body system in an initial pure state will come to thermal equilibrium if it satisfies the eigenstate thermalization hypothesis (ETH). We consider alternatives to ETH that have been proposed. We first show that von Neumann's quantum ergodic theorem relies on an assumption that is essentially equivalent to ETH. We also investigate whether, following a sudden quench, special classes of pure states can lead to thermal behavior in systems that do not obey ETH, namely, integrable systems. We find examples of this, but only for initial states that obeyed ETH before the quench.
如果一个处于初始纯态的孤立量子多体系统满足本征态热化假设(ETH),它将达到热平衡。我们考虑了已经提出的 ETH 的替代方案。我们首先表明,von Neumann 的量子遍历定理依赖于一个本质上等同于 ETH 的假设。我们还研究了在突然淬火之后,特殊类的纯态是否会导致不遵守 ETH 的系统中的热行为,即可积系统。我们找到了这样的例子,但仅适用于淬火前遵守 ETH 的初始态。