Polarization-insensitive microwave electrometry using Rydberg atoms

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Abstract

We investigate the Autler-Townes splitting for Rydberg atoms dressed with linearly polarized microwave radiation, resonant with generic S1/2↔P1/2 and S1/2↔P3/2 transitions. The splitting is probed using laser light via electromagnetically induced transparency measurements, where the transmission of probe laser light reveals a two-peak pattern. In particular, this pattern is invariant under rotation of the microwave field polarization. In consequence, we establish S↔P Rydberg transitions as ideally suited for polarization-insensitive electrometry, contrary to recent findings [A. Chopinaud and J. D. Pritchard, Phys. Rev. Appl. 16, 024008 (2021)].

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Cloutman, M., Chilcott, M., Elliott, A., Otto, J. S., Deb, A. B., & Kjærgaard, N. (2024). Polarization-insensitive microwave electrometry using Rydberg atoms. Physical Review Applied, 21(4). https://doi.org/10.1103/PhysRevApplied.21.044025

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