English

Heralded Generation of Multipartite Free-Electron W-State Entanglement

Quantum Physics 2026-05-19 v1

Abstract

We propose a heralded protocol for generating multipartite free-electron entanglement from atomic WNW_N resources in a sideband-resolved interaction regime. The scheme consists of NN independent electron--atom interaction arms, where each free electron couples locally to one two-level system. For uniform couplings and common detuning, the dynamics is solved analytically within the rotating-wave approximation. Projecting the atoms onto the all-ground state maps the initial atomic excitation manifold onto the electronic upper-sideband manifold and prepares an exact NN-electron WNW_N-type state. The heralding probability is obtained in closed form for resonant and detuned regimes. At resonance, the optimal success probability obeys the large-NN scaling PGNmaxe1/NP_{G_N}^{\max}\sim e^{-1}/N. The heralded state retains the multipartite entanglement structure of the atomic resource, as shown for arbitrary NN and illustrated explicitly for N=3N=3. Detuning, weak symmetry breaking, beyond-rotating-wave corrections, and Gaussian coupling envelopes are discussed. The protocol provides a scalable route toward multipartite free-electron entanglement generation from localized atomic resources within quantum electron optics.

Keywords

Cite

@article{arxiv.2605.17802,
  title  = {Heralded Generation of Multipartite Free-Electron W-State Entanglement},
  author = {Du Ran and Jing-Yi Liu and Dan Jin and Shuai Liu and Reuven Ianconescu and Ze-Long He and Ji-Yuan Bai and Ya-dong Li and Avraham Gover},
  journal= {arXiv preprint arXiv:2605.17802},
  year   = {2026}
}

Comments

19 pages, 9 figures