Chiral Sachdev-Ye model: Integrability and chaos of anyons in 1+1d
Abstract
We construct and study a chiral Sachdev-Ye (SY) model consisting of chiral SU Wess-Zumino-Witten (WZW) models with current-current interactions among each other, which generalizes the 0+1d quantum chaotic SY spin model into 1+1d chiral system with anyon excitations. Each WZW model hosts Abelian anyons as charge excitations, and may arise as the chiral edge theory of 2+1d gapped topological phases. We solve the chiral SY model in two limits which show distinct quantum dynamics. The first limit is the case with uniform interactions at any integers and , which is integrable and decomposes into a chiral SU WZW model and its coset with different "speed of light". When , the model maps to a free Majorana fermion model. The second limit is the large and limit with random interactions, which is solvable to the leading order, and exhibits many-body quantum chaos in the out-of-time-ordered correlation of anyons. As the interaction strength approaches the upper limit preserving the chirality, the leading velocity-dependent Lyapunov exponent of the model saturates the maximal chaos bound at temperature .
Keywords
Cite
@article{arxiv.2109.13263,
title = {Chiral Sachdev-Ye model: Integrability and chaos of anyons in 1+1d},
author = {Yichen Hu and Biao Lian},
journal= {arXiv preprint arXiv:2109.13263},
year = {2022}
}
Comments
19 pages, 6 figures