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arxiv: 1601.02535 · v1 · pith:2J74F7HPnew · submitted 2016-01-11 · ⚛️ physics.atom-ph · quant-ph

Optical measurements of strong microwave fields with Rydberg atoms in a vapor cell

classification ⚛️ physics.atom-ph quant-ph
keywords rydbergatomscellmicrowavemicrowaveselectricfieldfields
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We present a spectral analysis of Rydberg atoms in strong microwave fields using electromagnetically induced transparency (EIT) as an all-optical readout. The measured spectroscopic response enables optical, atom-based electric field measurements of high-power microwaves. In our experiments, microwaves are irradiated into a room-temperature rubidium vapor cell. The microwaves are tuned near the two-photon 65D-66D Rydberg transition and reach an electric field strength of 230V/m, about 20% of the microwave ionization threshold of these atoms. A Floquet treatment is used to model the Rydberg level energies and their excitation rates. We arrive at an empirical model for the field-strength distribution inside the spectroscopic cell that yields excellent overall agreement between the measured and calculated Rydberg EIT-Floquet spectra. Using spectral features in the Floquet maps we achieve an absolute strong-field measurement precision of 6%.

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