论文标题
一维哈伯德模型中的自旋跨界和超延伸
Spin crossovers and superdiffusion in the one-dimensional Hubbard model
论文作者
论文摘要
我们使用从集成性和广义流体动力学的工具来研究一维Hubbard模型中的有限温度动力学。首先,我们检查了电荷,自旋和能量运输,从半填充和零磁化中,重点关注强耦合方案,在该方案中,我们确定了丰富的温度和能量尺度相互作用,并在不同的动力学状态之间进行了交叉。我们确定了类似于自旋成分的luttinger液体的中等温度状态,在该状态下,自由度的自由度很热,但自由度的自由度在低温下。我们证明,旋转的重量在该体制和低温Luttinger液体状态之间的交叉表现出鲜明的特征,这些液体在电荷和能量响应中不存在,并根据伯特·安萨兹二叶粒的特性合理地使这种行为合理化。然后,我们在相图中沿特殊线的动力学转向对应于半填充和/或零磁化的动力学,从而总的来说,我们预计运输是亚球术但超级开发的。我们为Kardar-Parisi-Zhang(kpz)动力学缩放(通过$ x \ sim t^{2/3} $相关的长度和时间尺度)提供了分析和数值证据,沿这两条线和$ SO(4)$ - 对称点相交。我们的结果表明,在近期实验中,使用光学晶格哈伯德模拟器可以访问自旋含量交叉和KPZ缩放。
We use tools from integrability and generalized hydrodynamics to study finite-temperature dynamics in the one-dimensional Hubbard model. First, we examine charge, spin, and energy transport away from half-filling and zero magnetization, focusing on the strong coupling regime where we identify a rich interplay of temperature and energy scales, with crossovers between distinct dynamical regimes. We identify an intermediate-temperature regime analogous to the spin-incoherent Luttinger liquid, where spin degrees of freedom are hot but charge degrees of freedom are at low temperature. We demonstrate that the spin Drude weight exhibits sharp features at the crossover between this regime and the low-temperature Luttinger liquid regime, that are absent in the charge and energy response, and rationalize this behavior in terms of the properties of Bethe ansatz quasiparticles. We then turn to the dynamics along special lines in the phase diagram corresponding to half-filling and/or zero magnetization where on general grounds we anticipate that the transport is sub-ballistic but superdiffusive. We provide analytical and numerical evidence for Kardar-Parisi-Zhang (KPZ) dynamical scaling (with length and time scales related via $x\sim t^{2/3}$) along both lines and at the $SO(4)$-symmetric point where they intersect. Our results suggest that both spin-coherence crossovers and KPZ scaling may be accessed in near-term experiments with optical lattice Hubbard emulators.