Quantum Trilogy: Discrete Toda, Y-System and Chaos
Abstract
We discuss a discretization of the quantum Toda field theory associated with a semisimple finite-dimensional Lie algebra or a tamely-laced infinite-dimensional Kac-Moody algebra , generalizing the previous construction of discrete quantum Liouville theory for the case . The model is defined on a discrete two-dimensional lattice, whose spatial direction is of length . In addition we also find a "discretized extra dimension" whose width is given by the rank of , which decompactifies in the large limit. For the case of or , we find a symmetry exchanging and under appropriate spatial boundary conditions. The dynamical time evolution rule of the model is a quantizations of the so-called Y-system, and the theory can be well-described by the quantum cluster algebra. We discuss possible implications for recent discussions of quantum chaos, and comment on the relation with the quantum higher Teichmuller theory of type .
Keywords
Cite
@article{arxiv.1610.06925,
title = {Quantum Trilogy: Discrete Toda, Y-System and Chaos},
author = {Masahito Yamazaki},
journal= {arXiv preprint arXiv:1610.06925},
year = {2017}
}
Comments
35 pages, 15 figures; v2: journal version