q-deformed Loewner evolution
Abstract
The Loewner equation, in its stochastic incarnation introduced by Schramm, is an insightful method for the description of critical random curves and interfaces in two-dimensional statistical mechanics. Two features are crucial, namely conformal invariance and a conformal version of the Markov property. Extensions of the equation have been explored in various directions, in order to expand the reach of such a powerful method. We propose a new generalization based on q-calculus, a concept rooted in quantum geometry and non-extensive thermodynamics; the main motivation is the explicit breaking of the Markov property, while retaining scale invariance in the stochastic version. We focus on the deterministic equation and give some exact solutions; the formalism naturally gives rise to multiple mutually-intersecting curves. A general method of simulation is constructed - which can be easily extended to other q-deformed equations - and is applied to both the deterministic and the stochastic realms. The way the picture converges to the classical one is explored as well.
Cite
@article{arxiv.1307.5174,
title = {q-deformed Loewner evolution},
author = {Marco Gherardi and Alessandro Nigro},
journal= {arXiv preprint arXiv:1307.5174},
year = {2015}
}
Comments
21 pages, 7 figures