Anomalous transport from hot quasiparticles in interacting spin chains
Abstract
Many experimentally relevant quantum spin chains are approximately integrable, and support long-lived quasiparticle excitations. A canonical example of integrable model of quantum magnetism is the XXZ spin chain, for which energy spreads ballistically, but, surprisingly, high-temperature spin transport can be diffusive or superdiffusive. We review the transport properties of this model using an intuitive quasiparticle picture that relies on the recently introduced framework of generalized hydrodynamics. We discuss how anomalous linear response properties emerge from hierarchies of quasiparticles both in integrable and near-integrable limits, with an emphasis on the role of hydrodynamic fluctuations. We also comment on recent developments including non-linear response, full-counting statistics and far-from-equilibrium transport. We provide an overview of recent numerical and experimental results on transport in XXZ spin chains.
Keywords
Cite
@article{arxiv.2208.11133,
title = {Anomalous transport from hot quasiparticles in interacting spin chains},
author = {Sarang Gopalakrishnan and Romain Vasseur},
journal= {arXiv preprint arXiv:2208.11133},
year = {2023}
}
Comments
48 pages, 7 figures. Invited review article for Reports on Progress in Physics. Comments welcome