paper

A quantum-enhanced search for dark matter axions

arXiv:2008.01853 · doi:10.1038/s41586-021-03226-7

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 and mass window for axion-photon couplings above , reporting exclusion at the 90% level.

7 pages, 4 figures