| Literature DB >> 32116332 |
S V Syzranov1,2, A V Gorshkov2,3, V M Galitski2,4.
Abstract
We demonstrate that a weakly disordered metal with short-range interactions exhibits a transition in the quantum chaotic dynamics when changing the temperature or the interaction strength. For weak interactions, the system displays exponential growth of the out-of-time-ordered correlator (OTOC) of the current operator. The Lyapunov exponent of this growth is temperature-independent in the limit of vanishing interaction. With increasing the temperature or the interaction strength, the system undergoes a transition to a non-chaotic behaviour, for which the exponential growth of the OTOC is absent. We conjecture that the transition manifests itself in the quasiparticle energy-level statistics and also discuss ways of its explicit observation in cold-atom setups.Entities:
Year: 2019 PMID: 32116332 PMCID: PMC7047870 DOI: 10.1016/j.aop.2019.03.008
Source DB: PubMed Journal: Ann Phys (N Y) ISSN: 0003-4916 Impact factor: 2.730