Simultaneous Use of Cs and Rb Rydberg Atoms for Independent RF Electric Field Measurements via Electromagnetically Induced Transparency
Matt T. Simons, Joshua A. Gordon, and Christopher L. Holloway

TL;DR
This paper demonstrates simultaneous RF electric field measurements using Cs and Rb Rydberg atoms in the same vapor cell via EIT, enabling independent, in situ comparison to improve accuracy and establish a potential standard for E-field calibration.
Contribution
It introduces a method for concurrent RF E-field measurement with Cs and Rb Rydberg atoms in a single vapor cell, enhancing measurement reliability and aiding standardization.
Findings
Successful simultaneous EIT-based RF E-field detection with Cs and Rb atoms.
Agreement between Cs and Rb measurements at multiple GHz frequencies.
Potential for improved accuracy in E-field metrology and standardization.
Abstract
We demonstrate simultaneous electromagnetically-induced transparency (EIT) with cesium (Cs) and rubidium (Rb) Rydberg atoms in the same vapor cell with coincident (overlapping) optical fields. Each atomic system can detect radio frequency (RF) electric (E) field strengths through modification of the EIT signal (Autler-Townes (AT) splitting), which leads to a direct SI traceable RF E-field measurement. We show that these two systems can detect the same the RF E-field strength simultaneously, which provides a direct in situ comparison of Rb and Cs RF measurements in Rydberg atoms. In effect, this allows us to perform two independent measurements of the same quantity in the same laboratory, providing two different immediate and independent measurements. This gives two measurements that helps rule out systematic effects and uncertainties in this E-field metrology approach, which are…
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