English

Fast, low-loss all-optical phase modulation in warm rubidium vapour

Quantum Physics 2025-01-22 v2 Atomic Physics

Abstract

Low-loss high-speed switches are an integral component of future photonic quantum technologies, with applications in state generation, multiplexing, and the implementation of quantum gates. Phase modulation is one method of achieving this switching, but existing optical phase modulators either achieve high bandwidth or low loss, but not both. We demonstrate fast (100MHz100\,\mathrm{MHz} bandwidth), low-loss (83±2%83\pm2\% transmission) phase shifting (Δϕ=(0.90±0.05)π\Delta\phi = (0.90\pm0.05)\pi) in a signal field, induced by a control field, and mediated by the two-photon 5S1/25P3/25D5/25S_{1/2} \rightarrow{} 5P_{3/2} \rightarrow{} 5D_{5/2} transition in 87Rb^{87}\text{Rb} vapour. We discuss routes to enhance both performance and scalability for application to a range of quantum and classical technologies.

Keywords

Cite

@article{arxiv.2309.04313,
  title  = {Fast, low-loss all-optical phase modulation in warm rubidium vapour},
  author = {William Davis and Paul Burdekin and Tabijah Wasawo and Sarah E Thomas and Peter J Mosley and Joshua Nunn and Cameron McGarry},
  journal= {arXiv preprint arXiv:2309.04313},
  year   = {2025}
}

Comments

10 pages, 6 figures, this version includes more detailed simulation with collaborators from Imperial College London

R2 v1 2026-06-28T12:16:13.890Z