English

Local and Global Master Equations through the Lens of Non-Hermitian Physics

Quantum Physics 2026-04-13 v2

Abstract

We investigate the relation between non-Hermitian Hamiltonian and Lindblad dynamics in nonequilibrium open quantum systems. Non-Hermitian models can extend phase diagrams and enable sensing advantages, but such effects often rely on postselection, raising questions about their relevance for unconditional dynamics. Using a minimal two-qubit setup mediating a heat current, we compare local and global Markovian master equations with their non-Hermitian counterparts. We observe that exceptional points emerge only in the local master equation and in the corresponding non-Hermitian Hamiltonian at sufficiently strong nonequilibrium. We further consider hybrid configurations, where one bath is treated with a Lindblad description and the other with a non-Hermitian approach, interpolating between the two extremes. Our results contribute understanding the role of quantum jumps and exceptional points in nonequilibrium open quantum systems and identify a simple, experimentally accessible architecture, realizable, for instance, in circuit-QED platforms, for their exploration.

Keywords

Cite

@article{arxiv.2603.23011,
  title  = {Local and Global Master Equations through the Lens of Non-Hermitian Physics},
  author = {Grazia Di Bello and Fabrizio Pavan and Vittorio Cataudella and Donato Farina},
  journal= {arXiv preprint arXiv:2603.23011},
  year   = {2026}
}

Comments

11 pages with 7 figures, appendices with 4 figures