论文标题
在远程横向链链中的相关性和纠缠的传播
Spreading of Correlations and Entanglement in the Long-Range Transverse Ising Chain
论文作者
论文摘要
长期相互作用是否允许在非相关量子模型中产生一种因果关系形式,仍然是一个开放的问题,对信息和热化过程的传播具有深远的影响。在这里,我们研究了具有代数远程交换耦合的一维横向ISIS模型的不平衡动力学。使用最先进的张量 - 网络方法,并通过分析计算并考虑各种可观察物,我们表明,因果关系的弱形式出现,其特征在于非普遍的动态指数。虽然局部自旋和自旋相关因果边缘是次要的,但因果区域具有丰富的内部结构,根据可观察到的可观察到的弹道或超级焊接特征。相反,纠缠熵的因果区域是毫无特色的,它的边缘总是弹道,而与相互作用范围无关。我们的结果阐明了在远程相互作用的晶格模型中信息的传播,并为未来的实验铺平了道路。
Whether long-range interactions allow for a form of causality in non-relativistic quantum models remains an open question with far-reaching implications for the propagation of information and thermalization processes. Here, we study the out-of-equilibrium dynamics of the one-dimensional transverse Ising model with algebraic long-range exchange coupling. Using a state of the art tensor-network approach, complemented by analytic calculations and considering various observables, we show that a weak form of causality emerges, characterized by non-universal dynamical exponents. While the local spin and spin correlation causal edges are sub-ballistic, the causal region has a rich internal structure, which, depending on the observable, displays ballistic or super-ballistic features. In contrast, the causal region of entanglement entropy is featureless and its edge is always ballistic, irrespective of the interaction range. Our results shed light on the propagation of information in long-range interacting lattice models and pave the way to future experiments, which are discussed.