Makrides Constantinos, Li Ming, Tiesinga Eite, Kotochigova Svetlana
Department of Physics, Temple University, Philadelphia, PA 19122-6082, USA.
Joint Quantum Institute and Joint Center for Quantum Information and Computer Science, National Institute of Standards and Technology and University of Maryland, Gaithersburg, MD 20899, USA.
Sci Adv. 2018 Feb 16;4(2):eaap8308. doi: 10.1126/sciadv.aap8308. eCollection 2018 Feb.
Ergodic quantum systems are often quite alike, whereas nonergodic, fractal systems are unique and display characteristic properties. We explore one of these fractal systems, weakly bound dysprosium lanthanide molecules, in an external magnetic field. As recently shown, colliding ultracold magnetic dysprosium atoms display a soft chaotic behavior with a small degree of disorder. We broaden this classification by investigating the generalized inverse participation ratio and fractal dimensions for large sets of molecular wave functions. Our exact close-coupling simulations reveal a dynamic phase transition from partially localized states to totally delocalized states and universality in its distribution by increasing the magnetic field strength to only a hundred Gauss (or 10 mT). Finally, we prove the existence of nonergodic delocalized phase in the system and explain the violation of ergodicity by strong coupling between near-threshold molecular states and the nearby continuum.
遍历量子系统通常非常相似,而非遍历的分形系统则是独特的,并展现出特征性质。我们在外部磁场中研究其中一种分形系统——弱束缚镝镧系分子。正如最近所表明的,相互碰撞的超冷磁性镝原子呈现出具有小程度无序的软混沌行为。我们通过研究大量分子波函数的广义逆参与率和分形维数来拓展这种分类。我们精确的密耦模拟揭示了通过将磁场强度仅增加到一百高斯(或10毫特斯拉),从部分局域态到完全离域态的动态相变及其分布的普适性。最后,我们证明了系统中非遍历离域相的存在,并解释了近阈分子态与附近连续态之间的强耦合导致的遍历性破坏。