English

Entanglement in Resonance Fluorescence

Quantum Physics 2024-11-15 v2 Quantum Gases Optics

Abstract

Particle entanglement is a fundamental resource upon which are based many quantum technologies. However, the up-to-now best sources of entangled photons rely on parametric down-conversion processes, which are optimal only at certain frequencies, which rarely match the energies of condensed-matter systems that can benefit from entanglement. In this Article, we show a way to circumvent this issue, and we introduce a new source of entangled photons based on resonance fluorescence delivering photon pairs as a superposition of vacuum and the Bell state Φ|\Phi^-\rangle. Our proposal relies on the emission from the satellite peaks of a two-level system driven by a strong off-resonant laser, whose intensity controls the frequencies of the entangled photons. Furthermore, the degree of entanglement can be optimized for every pair of frequencies, thus demonstrating a clear advantage over existing technologies. Finally, we illustrate the power of our novel source of entangled single-photon pairs by exciting a system of polaritons and showing that they are left in a maximally entangled steady state.

Keywords

Cite

@article{arxiv.2302.04059,
  title  = {Entanglement in Resonance Fluorescence},
  author = {Juan Camilo López Carreño and Santiago Bermúdez Feijoo and Magdalena Stobińska},
  journal= {arXiv preprint arXiv:2302.04059},
  year   = {2024}
}

Comments

8 pages and 4 figures in the main text; 6 pages and 2 figures in the supplementary material

R2 v1 2026-06-28T08:35:02.826Z