Long-range correlation and the spin conductivity in the XXZ chain from ballistic macroscopic fluctuation theory
arXiv:2605.01645
Abstract
Based on the ballistic macroscopic fluctuation theory, the integration of the spin correlation function (spin conductivity) is analyzed for the spin-1/2 XXZ chain in the critical regime. In the time when the magnetization of an infinite spin chain fluctuates from an initial state with a wavelength as long as the infinite length , the equal-time two-point spin correlation function is scaled up to . In the state where the ballistic spin transport decays at high temperature , the diffusive transport remains on a large scale. We show that the spin conductivity is proportional to in the limit and its high temperature proportionality constant diverges in the case where one-quasiparticle magnetization is infinitely large. This analysis informs that the superdiffusive spin transport is driven by the -scaled long-range spin correlation and sheds a light on the dynamic scaling in spin transport at the isotropic point.
29 pages & 1 figure