Environment-matrix-product operator for boundary-free large-scale quantum many-body simulations
Abstract
We propose an alternative to the infinite density-matrix renormalization approach for accessing quantum many-body states within a finite-size calculation that faithfully mimics the thermodynamic limit. Our method constructs environment matrix product operators (MPOs) representing the Hamiltonian of semi-infinite regions surrounding the target system. Starting from the finite-size ground-state MPS, we contract its Hamiltonian representation to generate effective environment MPOs, which are then attached to a renewed finite system in a recursive manner. This iterative embedding drives the system toward a bulk-like state with negligible finite-size effects. The scheme requires no assumption of homogeneity and achieves unprecedentedly long real-time dynamics free from boundary reflections.
Cite
@article{arxiv.2512.07923,
title = {Environment-matrix-product operator for boundary-free large-scale quantum many-body simulations},
author = {Souta Shimozono and Chisa Hotta},
journal= {arXiv preprint arXiv:2512.07923},
year = {2025}
}
Comments
7pages, 4figures