English

Single-photon hologram of a zero-area pulse

Quantum Physics 2021-10-13 v2 Atomic Physics Optics

Abstract

Single photons exhibit inherently quantum and unintuitive properties such as the Hong-ou-Mandel effect, demonstrating their bosonic and quantized nature, yet at the same time may correspond to single excitations of spatial or temporal modes with a very complex structure. Those two features are rarely seen together. Here we experimentally demonstrate how the Hong-Ou-Mandel effect can be spectrally-resolved and harnessed to characterize a complex temporal mode of a single-photon \textendash{} a zero-area pulse \textendash{} obtained via a resonant interaction of a terahertz-bandwidth photon with a narrow gigahertz-wide atomic transition of atomic vapor. The combination of bosonic quantum behavior with bandwidth-mismatched light-atom interaction is of fundamental importance for a deeper understanding of both phenomena, as well as their engineering offering applications in the characterization of ultra-fast transient processes.

Keywords

Cite

@article{arxiv.2105.02795,
  title  = {Single-photon hologram of a zero-area pulse},
  author = {Michał Lipka and Michał Parniak},
  journal= {arXiv preprint arXiv:2105.02795},
  year   = {2021}
}