English

Certifying steady-state properties of open quantum systems

Quantum Physics 2025-10-17 v2

Abstract

Estimating the steady-state properties of open many-body quantum systems is a fundamental challenge in quantum science and technologies. In this work, we present a scalable approach based on semi-definite programming to derive certified bounds on the expectation value of an arbitrary observable in the steady state of Lindbladian dynamics. We illustrate our method on a series of many-body systems, including paradigmatic spin-1/2 chains and two-dimensional ladders, considering both equilibrium and nonequilibrium steady-states. We benchmark our method with state-of-the-art tensor-network approaches that, unlike our method, are only able to provide estimates, with no guarantee, on steady-state quantities. For the tested models, only modest computational effort is needed to obtain certified non-trivial bounds for system sizes intractable by exact methods. Our method introduces the first general numerical tool for bounding steady-state properties of open quantum dynamics, opening a new avenue in the understanding of stable configurations in many-body systems.

Keywords

Cite

@article{arxiv.2410.13646,
  title  = {Certifying steady-state properties of open quantum systems},
  author = {Luke Mortimer and Donato Farina and Grazia Di Bello and David Jansen and Andreas Leitherer and Pere Mujal and Antonio Acín},
  journal= {arXiv preprint arXiv:2410.13646},
  year   = {2025}
}

Comments

See also arXiv:2410.07384

R2 v1 2026-06-28T19:26:00.874Z