Dual-isometric Projected Entangled Pair States
Abstract
Efficient characterization of higher dimensional many-body physical states presents significant challenges. In this paper, we propose a new class of Project Entangled Pair State (PEPS) that incorporates two isometric conditions. This new class facilitates the efficient calculation of general local observables and certain two-point correlation functions, which have been previously shown to be intractable for general PEPS, or PEPS with only a single isometric constraint. Despite incorporating two isometric conditions, our class preserves the rich physical structure while enhancing the analytical capabilities. It features a large set of tunable parameters, with only a subleading correction compared to that of general PEPS. Furthermore, we analytically demonstrate that this class can encode universal quantum computations and can represent a transition from topological to trivial order.
Cite
@article{arxiv.2404.16783,
title = {Dual-isometric Projected Entangled Pair States},
author = {Xie-Hang Yu and J. Ignacio Cirac and Pavel Kos and Georgios Styliaris},
journal= {arXiv preprint arXiv:2404.16783},
year = {2025}
}
Comments
5+10 pages, 1 figure