arXiv Analytics

Sign in

arXiv:2111.08420 [math-ph]AbstractReferencesReviewsResources

The hydrodynamic theory of dynamical correlation functions in the XX chain

Giuseppe Del Vecchio Del Vecchio, Benjamin Doyon

Published 2021-11-16, updated 2022-01-25Version 2

By the hydrodynamic linear response theory, dynamical correlation functions decay as power laws along certain velocities, determined by the flux Jacobian. Such correlations are obtained by hydrodynamic projections, and physically, they are due to propagating "sound waves" or generalisation thereof, transporting conserved quantities between the observables. However, some observables do not emit sound waves, such as order parameters associated to symmetry breaking. In these cases correlation functions decay exponentially everywhere, a behaviour not captured by the hydrodynamic linear response theory. Focussing on spin-spin correlation functions in the XX quantum chain, we first review how hydrodynamic linear response works, emphasising that the necessary fluid cell averaging washes out oscillatory effects. We then show how, beyond linear response, Euler hydrodynamics can still predict the exponential decay of correlation functions of order parameters. This is done by accounting for the large-scale fluctuations of domain walls, via the recently developed ballistic fluctuation theory. We use the framework of generalised hydrodynamics, which is particularly simple in this model due to its free fermion description. In particular, this reproduces, by elementary calculations, the exponential decay in the celebrated formulae by A.R. Its, A.G. Izergin, V.E. Korepin, N.A. Slavnov (1993) and by X. Jie (1998), which were originally obtained by intricate Fredholm determinant analysis; and gives a new formula in a parameter domain where no result was obtained before. We confirm the results by numerical simulations.

Comments: v1: 40 pages, 5 figures. v2: 43 pages, one appendix added, typos corrected, references added
Related articles: Most relevant | Search more
arXiv:1706.09459 [math-ph] (Published 2017-06-28)
On the thermodynamic limit of form factor expansions of dynamical correlation functions in the massless regime of the XXZ spin $1/2$ chain
arXiv:1505.02511 [math-ph] (Published 2015-05-11)
Dynamical correlation functions for products of random matrices
arXiv:1206.2630 [math-ph] (Published 2012-06-12)
Form factor approach to dynamical correlation functions in critical models