English

Non-local meta-conformal invariance, diffusion-limited erosion and the XXZ chain

Statistical Mechanics 2017-01-06 v2 High Energy Physics - Theory Mathematical Physics math.MP Exactly Solvable and Integrable Systems

Abstract

Diffusion-limited erosion is a distinct universality class of fluctuating interfaces. Although its dynamical exponent z=1z=1, none of the known variants of conformal invariance can act as its dynamical symmetry. In d=1d=1 spatial dimensions, its infinite-dimensional dynamic symmetry is constructed and shown to be isomorphic to the direct sum of three loop-Virasoro algebras, with the maximal finite-dimensional sub-algebra sl(2,R)sl(2,R)sl(2,R)\mathfrak{sl}(2,\mathbb{R})\oplus\mathfrak{sl}(2,\mathbb{R})\oplus\mathfrak{sl}(2,\mathbb{R}). The infinitesimal generators are spatially non-local and use the Riesz-Feller fractional derivative. Co-variant two-time response functions are derived and reproduce the exact solution of diffusion-limited erosion. The relationship with the terrace-step-kind model of vicinal surfaces and the integrable XXZ chain are discussed.

Keywords

Cite

@article{arxiv.1611.02975,
  title  = {Non-local meta-conformal invariance, diffusion-limited erosion and the XXZ chain},
  author = {Malte Henkel},
  journal= {arXiv preprint arXiv:1611.02975},
  year   = {2017}
}

Comments

Latex 2e, 28 pp, 4 figures (revised, with 2 new figures)