English

Steady-State Entanglement Generation via Casimir-Polder Interactions

Quantum Physics 2025-12-04 v3

Abstract

We investigate the generation of steady-state entanglement between two atoms resulting from the fluctuation-mediated Casimir-Polder (CP) interactions near a surface. Starting with an initially separable state of the atoms, we analyze the atom-atom entanglement dynamics for atoms placed at distances in the range of 25\sim25 nm away from a planar medium, examining the effect of medium properties and geometrical configuration of the atomic dipoles. We show that perfectly conducting and superconducting surfaces yield an optimal steady-state concurrence value of approximately 0.5. Furthermore, although the generated entanglement decreases with medium losses for a metal surface, we identify an optimal distance from the metal surface that assists in entanglement generation by the surface. While fluctuation-mediated interactions are typically considered detrimental to the coherence of quantum systems at nanoscales, our results demonstrate a mechanism for leveraging such interactions for entanglement generation.

Keywords

Cite

@article{arxiv.2406.02270,
  title  = {Steady-State Entanglement Generation via Casimir-Polder Interactions},
  author = {Mohsen Izadyari and Onur Pusuluk and Kanu Sinha and Özgür E. Müstecaplıoğlu},
  journal= {arXiv preprint arXiv:2406.02270},
  year   = {2025}
}

Comments

7 pages, 3 figures

R2 v1 2026-06-28T16:52:53.168Z