Wittmann W Karin, Castro E R, Foerster Angela, Santos Lea F
Instituto de Física, UFRGS, Porto Alegre, 91501-97, RS, Brazil.
Department of Physics, Yeshiva University, New York, New York 10016, USA.
Phys Rev E. 2022 Mar;105(3-1):034204. doi: 10.1103/PhysRevE.105.034204.
Systems of interacting bosons in triple-well potentials are of significant theoretical and experimental interest. They are explored in contexts that range from quantum phase transitions and quantum dynamics to semiclassical analysis. Here, we systematically investigate the onset of quantum chaos in a triple-well model that moves away from integrability as its potential gets tilted. Even in its deepest chaotic regime, the system presents features reminiscent of integrability. Our studies are based on level spacing distribution and spectral form factor, structure of the eigenstates, and diagonal and off-diagonal elements of observables in relationship to the eigenstate thermalization hypothesis. With only three sites, the system's eigenstates are at the brink of becoming fully chaotic, so they do not yet exhibit Gaussian distributions, which resonates with the results for the observables.
处于三阱势中的相互作用玻色子系统具有重大的理论和实验意义。它们在从量子相变、量子动力学到半经典分析等各种背景下被研究。在此,我们系统地研究了一个三阱模型中量子混沌的起始,该模型随着其势的倾斜而偏离可积性。即使在其最深的混沌区域,该系统仍呈现出一些让人联想到可积性的特征。我们的研究基于能级间距分布和谱形式因子、本征态的结构以及与本征态热化假设相关的可观测量的对角元和非对角元。由于只有三个格点,该系统的本征态正处于完全混沌的边缘,所以它们尚未呈现出高斯分布,这与可观测量的结果相呼应。