Vahedi J, Ashouri A, Mahdavifar S
Department of Physics, Sari Branch, Islamic Azad University, Sari, Iran.
Department of Physics, University of Guilan, 45196-313 Rasht, Iran.
Chaos. 2016 Oct;26(10):103106. doi: 10.1063/1.4964745.
Using one-dimensional spin-1/2 systems as prototypes of quantum many-body systems, we study the emergence of quantum chaos. The main purpose of this work is to answer the following question: how the spin-orbit interaction, as a pure quantum interaction, may lead to the onset of quantum chaos? We consider the three integrable spin-1/2 systems: the Ising, the XX, and the XXZ limits and analyze whether quantum chaos develops or not after the addition of the Dzyaloshinskii-Moriya interaction. We find that depending on the strength of the anisotropy parameter, the answer is positive for the XXZ and Ising models, whereas no such evidence is observed for the XX model. We also discuss the relationship between quantum chaos and thermalization.
我们以一维自旋 - 1/2 系统作为量子多体系统的原型,研究量子混沌的出现。这项工作的主要目的是回答以下问题:作为一种纯量子相互作用的自旋 - 轨道相互作用如何导致量子混沌的产生?我们考虑三个可积的自旋 - 1/2 系统:伊辛模型、XX 模型和 XXZ 极限,并分析在添加了 Dzyaloshinskii - Moriya 相互作用后量子混沌是否会发展。我们发现,根据各向异性参数的强度,XXZ 模型和伊辛模型的答案是肯定的,而 XX 模型则未观察到此类证据。我们还讨论了量子混沌与热化之间的关系。