Anomalous low-frequency conductivity in easy-plane XXZ spin chains
Abstract
In the easy-plane regime of XXZ spin chains, spin transport is ballistic, with a Drude weight that has a discontinuous fractal dependence on the value of the anisotropy at nonzero temperatures. We show that this structure necessarily implies the divergence of the low-frequency conductivity for generic irrational values of . Within the framework of generalized hydrodynamics, we show that in the high-temperature limit the low-frequency conductivity at a generic anisotropy scales as ; anomalous response occurs because quasiparticles undergo L\'evy flights. For rational values of , the divergence is cut off at low frequencies and the corrections to ballistic spin transport are diffusive. We also use our approach to recover that at the isotropic point , spin transport is superdiffusive with . We support our results with extensive numerical studies using matrix-product operator methods.
Cite
@article{arxiv.1909.05263,
title = {Anomalous low-frequency conductivity in easy-plane XXZ spin chains},
author = {Utkarsh Agrawal and Sarang Gopalakrishnan and Romain Vasseur and Brayden Ware},
journal= {arXiv preprint arXiv:1909.05263},
year = {2020}
}
Comments
5pp, 2 figs, plus supplemental material