arXiv · 1604.05526
Frequency-Tunable Microwave Field Detection in an Atomic Vapor Cell
Abstract
We use an atomic vapor cell as a frequency tunable microwave field detector operating at frequencies from GHz to tens of GHz. We detect microwave magnetic fields from 2.3 GHz to 26.4 GHz, and measure the amplitude of the sigma+ component of an 18 GHz microwave field. Our proof-of-principle demonstration represents a four orders of magnitude extension of the frequency tunable range of atomic magnetometers from their previous dc to several MHz range. When integrated with a high resolution microwave imaging system, this will allow for the complete reconstruction of the vector components of a microwave magnetic field and the relative phase between them. Potential applications include near-field characterisation of microwave circuitry and devices, and medical microwave sensing and imaging.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Andrew Horsley, Philipp Treutlein. 2016-04-19. Frequency-Tunable Microwave Field Detection in an Atomic Vapor Cell. https://doi.org/10.1063/1.4950805
Cite the original work for its findings. Save a collection to share your selection of sources.