English

L00L entanglement and the twisted quantum eraser

Quantum Physics 2023-11-15 v3

Abstract

We demonstrate the generation of unbalanced two-photon entanglement in the Laguerre-Gaussian (LG) transverse-spatial degree-of-freedom, where one photon carries a fundamental (Gauss) mode and the other a higher-order LG mode with a non-zero azimuthal (\ell) or radial (pp) component. Taking a cue from the N00NN00N state nomenclature, we call these types of states 00\ell 00 \ell-entangled. They are generated by shifting one photon in the LG mode space and combining it with a second (initially uncorrelated) photon at a beamsplitter, followed by coincidence detection. In order to verify two-photon coherence, we demonstrate a two-photon ``twisted'' quantum eraser, where Hong-Ou-Mandel interference is recovered between two distinguishable photons by projecting them into a rotated LG superposition basis. Using an entanglement witness, we find that our generated states have fidelities of 95.31\% and 89.80\% to their respective ideal maximally entangled states. Besides being of fundamental interest, this type of entanglement will likely have a significant impact on tickling the average quantum physicist's funny bone.

Keywords

Cite

@article{arxiv.2306.13620,
  title  = {L00L entanglement and the twisted quantum eraser},
  author = {Dylan Danese and Sabine Wollmann and Saroch Leedumrongwatthanakun and Will McCutcheon and Manuel Erhard and William N. Plick and Mehul Malik},
  journal= {arXiv preprint arXiv:2306.13620},
  year   = {2023}
}

Comments

Written for submission to the AVS Quantum Science special issue in memory of Jon Dowling

R2 v1 2026-06-28T11:12:59.345Z