English

A quantum-enhanced search for dark matter axions

Quantum Physics 2021-02-15 v1 High Energy Physics - Experiment

Abstract

In dark matter axion searches, quantum uncertainty manifests as a fundamental noise source, limiting the measurement of the quadrature observables used for detection. We use vacuum squeezing to circumvent the quantum limit in a search for a new particle. By preparing a microwave-frequency electromagnetic field in a squeezed state and near-noiselessly reading out only the squeezed quadrature, we double the search rate for axions over a mass range favored by recent theoretical projections. We observe no signature of dark matter axions in the combined 16.9617.1216.96-17.12 and 17.1417.28 μeV/c217.14-17.28\space\mu\text{eV}/c^2 mass window for axion-photon couplings above gγ=1.38×gγKSVZg_{\gamma} = 1.38\times g_{\gamma}^\text{KSVZ}, reporting exclusion at the 90% level.

Keywords

Cite

@article{arxiv.2008.01853,
  title  = {A quantum-enhanced search for dark matter axions},
  author = {K. M. Backes and D. A. Palken and S. Al Kenany and B. M. Brubaker and S. B. Cahn and A. Droster and Gene C. Hilton and Sumita Ghosh and H. Jackson and S. K. Lamoreaux and A. F. Leder and K. W. Lehnert and S. M. Lewis and M. Malnou and R. H. Maruyama and N. M. Rapidis and M. Simanovskaia and Sukhman Singh and D. H. Speller and I. Urdinaran and Leila R. Vale and E. C. van Assendelft and K. van Bibber and H. Wang},
  journal= {arXiv preprint arXiv:2008.01853},
  year   = {2021}
}

Comments

7 pages, 4 figures

R2 v1 2026-06-23T17:38:48.069Z