Hydrodynamics in lattice models with continuous non-Abelian symmetries

Paolo Glorioso, Luca V. Delacr'etaz, Xiao Chen, R. Nandkishore, A. Lucas
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引用次数: 31

Abstract

We develop a systematic effective field theory of hydrodynamics for many-body systems on the lattice with global continuous non-Abelian symmetries. Models with continuous non-Abelian symmetries are ubiquitous in physics, arising in diverse settings ranging from hot nuclear matter to cold atomic gases and quantum spin chains. In every dimension and for every flavor symmetry group, the low energy theory is a set of coupled noisy diffusion equations. Independence of the physics on the choice of canonical or microcanonical ensemble is manifest in our hydrodynamic expansion, even though the ensemble choice causes an apparent shift in quasinormal mode spectra. We use our formalism to explain why flavor symmetry is qualitatively different from hydrodynamics with other non-Abelian conservation laws, including angular momentum and charge multipoles. As a significant application of our framework, we study spin and energy diffusion in classical one-dimensional SU(2)-invariant spin chains, including the Heisenberg model along with multiple generalizations. We argue based on both numerical simulations and our effective field theory framework that non-integrable spin chains on a lattice exhibit conventional spin diffusion, in contrast to some recent predictions that diffusion constants grow logarithmically at late times. We show that the apparent enhancement of diffusion is due to slow equilibration caused by (non-Abelian) hydrodynamic fluctuations.
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连续非阿贝尔对称格模型中的流体力学
建立了具有全局连续非阿贝尔对称的格上多体系统的系统有效场论。具有连续非阿贝尔对称性的模型在物理学中无处不在,从热核物质到冷原子气体和量子自旋链的各种设置中都有出现。在每一个维数和每一个味对称群中,低能理论都是一组耦合的噪声扩散方程。选择正则系综或微正则系综的物理独立性在我们的流体动力展开中得到了体现,尽管这种系综的选择导致了准正态模谱的明显偏移。我们用我们的形式来解释为什么风味对称性与其他非阿贝尔守恒定律(包括角动量和电荷多极)的流体力学在性质上不同。作为我们框架的一个重要应用,我们研究了经典一维SU(2)-不变自旋链中的自旋和能量扩散,包括Heisenberg模型和多个推广。基于数值模拟和我们的有效场论框架,我们认为晶格上的不可积自旋链表现出传统的自旋扩散,这与最近的一些预测相反,即扩散常数在后期呈对数增长。我们表明,扩散的明显增强是由于(非阿贝尔)流体动力波动引起的缓慢平衡。
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