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Hydrodynamics of operator spreading and quasiparticle diffusion in interacting integrable systems

机译:交互互动互动系统中操作员扩散的流体动力学和Quasipliplicle扩散

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We address the hydrodynamics of operator spreading in interacting integrable lattice models. In these models, operators spread through the ballistic propagation of quasiparticles, with an operator front whose velocity is locally set by the fastest quasiparticle velocity. In interacting integrable systems, this velocity depends on the density of the other quasiparticles, so equilibrium density fluctuations cause the front to follow a biased random walk, and therefore to broaden diffusively. Ballistic front propagation and diffusive front broadening are also generically present in nonintegrable systems in one dimension; thus, although the mechanisms for operator spreading are distinct in the two cases, these coarse-grained measures of the operator front do not distinguish between the two cases. We present an expression for the front-broadening rate; we explicitly derive this for a particular integrable model (the "Floquet-Fredrickson-Andersen" model), and argue on kinetic grounds that it should apply generally. Our results elucidate the microscopic mechanism for diffusive corrections to ballistic transport in interacting integrable models.
机译:我们解决了互动互动晶格模型中操作员的流体动力学。在这些模型中,操作者通过Quasiply的弹道传播传播,操作员前部通过最快的Quasiply速度局部设定。在相互作用的可加工系统中,该速度取决于其他Quasiply的密度,因此平衡密度波动导致前方遵循偏置的随机行走,因此扩大扩展。弹道正面传播和扩展在一个维度的非忍耐系统中也在原产地存在;因此,尽管在两种情况下,操作员扩散的机制是不同的,但是操作员前部的这些粗粒度测量不区分两种情况。我们呈现出前进率的表达;我们明确地推导出这个特定的可积模型(“Floquet-Fredrickson-Andersen”模型),并争论它通常应该申请的动力学理由。我们的研究结果阐明了与交互可排水模型中的弹道传输的显微矫正机制。

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