English

Spatial properties of entangled two-photon absorption

Quantum Physics 2022-06-10 v2

Abstract

We experimentally study entangled two-photon absorption in Rhodamine 6G as a function of the spatial properties of a high flux of broadband entangled photon pairs. We first demonstrate a key signature dependence of the entangled two-photon absorption rate on the type of entangled pair flux attenuation: linear, when the laser pump power is attenuated, and quadratic, when the pair flux itself experiences linear loss. We then perform a fluorescence-based Z-scan measurement to study the influence of beam waist size on the entangled two-photon absorption process and compare this to classical single- and two-photon absorption processes. We demonstrate that the entangled two-photon absorption shares a beam waist dependence similar to that of classical two-photon absorption. This result presents an additional argument for the wide range of contrasting values of quoted entangled two-photon absorption cross-sections of dyes in literature.

Keywords

Cite

@article{arxiv.2206.00500,
  title  = {Spatial properties of entangled two-photon absorption},
  author = {D. Tabakaev and A. Djorovic and L. La Volpe and G. Gaulier and S. Ghosh and L. Bonacina and J. -P. Wolf and H. Zbinden and R. T. Thew},
  journal= {arXiv preprint arXiv:2206.00500},
  year   = {2022}
}
R2 v1 2026-06-24T11:35:59.418Z