English

Non equilibrium dissipation-driven steady many-body entanglement

Quantum Physics 2015-04-23 v2

Abstract

We study an ensemble of two-level quantum systems (qubits) interacting with a common electromagnetic field in proximity of a dielectric slab whose temperature is held different from that of some far surrounding walls. We show that the dissipative dynamics of the qubits driven by this stationary and out of thermal equilibrium (OTE) field, allows the production of steady many-body entangled states, differently from the case at thermal equilibrium where steady states are always non-entangled. By studying up to ten qubits, we point out the role of symmetry in the entanglement production, which is exalted in the case of permutationally invariant configurations. In the case of three qubits, we find a strong dependence of tripartite entanglement on the spatial disposition of the qubits, and in the case of six qubits, we find several highly entangled bipartitions where entanglement can, remarkably, survive for large qubit-qubit distances up to 100 μ\mum.

Keywords

Cite

@article{arxiv.1409.7178,
  title  = {Non equilibrium dissipation-driven steady many-body entanglement},
  author = {Bruno Bellomo and Mauro Antezza},
  journal= {arXiv preprint arXiv:1409.7178},
  year   = {2015}
}

Comments

10 pages, 5 figures, updated version accepted for publication in Phys. Rev. A

R2 v1 2026-06-22T06:05:25.536Z