English

Unconditional remote entanglement using second-harmonic generation and twin two-mode squeezed vacuum states

Quantum Physics 2023-03-29 v1

Abstract

We propose a photonics-based, continuous-variable (CV) form of remote entanglement utilizing strictly second-order nonlinear optical interactions that does not require the implementation of a state-projective measurement (i.e. remote entanglement without conditioning). This scheme makes use of two separate down-converters, wherein the corresponding nonlinear crystals are driven by strong classical fields as prescribed by the parametric approximation, as well as a fully quantum mechanical model of nondegenerate second harmonic generation (SHG) whose evolution is described by the trilinear Hamiltonian of the form H^shg=iκ(a^b^c^a^b^c^)\hat{H}_{\text{shg}} = i\hbar\kappa\big(\hat{a}\hat{b}\hat{c}^{\dagger} - \hat{a}^{\dagger}\hat{b}^{\dagger}\hat{c}\big). By driving the SHG process with the signal modes of the two down-converters, we show entanglement formation between the generated second-harmonic mode (SH-mode) and the non-interacting joint-idler subsystem without the need for any state-reductive measurements on the interacting modes.

Keywords

Cite

@article{arxiv.2209.12969,
  title  = {Unconditional remote entanglement using second-harmonic generation and twin two-mode squeezed vacuum states},
  author = {Richard J. Birrittella and James Schneeloch and Christopher C. Tison and Michael L. Fanto and Paul M. Alsing and Christopher C. Gerry},
  journal= {arXiv preprint arXiv:2209.12969},
  year   = {2023}
}
R2 v1 2026-06-28T02:08:44.290Z